How InDro’s Custom Robots Speed High-level R&D

How InDro’s Custom Robots Speed High-level R&D

By Scott Simmie

 

At the University of Toronto Robotics Institute‘s recent annual conference, a small convoy of robots was getting a lot of attention.

They were autonomously navigating, with each robot following the other at a precise distance and speed, all while sharing data about their surroundings with the entire group. It was the result of a lot of work by two PhD candidates from the University of Toronto’s Aerospace Institute (UTIAS), who have been working together out of the Robotics Institute’s lab.

The researchers are Luka Antonyshyn and Alec Krawciw. Luka is in his second year as a PhD student at the Autonomous Space Robotics Laboratory, run by Professor Tim Barfoot under the Robotics Institute. Alec previously studied mechanical engineering at the University of Victoria prior to coming to the U of T in 2022. He’s also working on his PhD in that same laboratory.

Those two, working together as closely as those robots, are responsible for that convoy’s precision.

“Throughout my PhD, I’ve generally been working on algorithms that make it easier for robots to drive safely and reliably in unstructured off-road environments,” says Krawciw. Meanwhile, Antonyshyn has been working on complementary research: Control. Specifically, getting the robots to ‘think’ about the environment around them and adjust their driving accordingly.

“If you imagine a human being hiking or mountain biking, they tend to look at their environment and kind of pre-compensate based on the terrain they see ahead of them,” he says. “So I’m trying to do this in the context of a computer and a robot.”

It’s high-level work, with an even higher-level goal: To have their research someday control autonomous robots on the moon.

Above: Channeling the Beatles Abbey Road. The robot platforms were supplied by InDro but the research and modifications were done by Luka Antonyshyn and Alec Krawciw under the direction of Professor Tim Barfoot. Below: A closer look at those robots, which feature InDro Commander on the Hunter 2.0 platform

U of T Hunter 2.0 Lunar

MOONBOTS

 

The work these PhD students are working on is very real. They have been collaborating with MDA Space, a leader in the field whose accomplishments famously include the building of the Canadarm – a remotely controlled arm used in NASA’s Space Shuttle program. (You can review MDA Space’s many accomplishments on a timeline here.)

MDA Space has been working alongside the Canadian Space Agency to develop what will be called the Lunar Utility Vehicle. It will be a fairly large moon rover that will be used as part of the Artemis program, NASA’s long-term mission to return humans to the moon. That vehicle will transport cargo from landing and launch sites on the moon to the habitats where astronauts will be living.

“So the idea of the convoy we’ve been exploring is essentially that using multiple robots would allow us to carry much bigger pieces of cargo than a single robot could by itself,” explains Antonyshyn.

Of course, a good algorithm can be scaled to larger devices. We asked these researchers if there were plans to eventually do that – taking it up from the Hunter 2.0 and InDro Commander platforms they’re currently using. The answer?

“It’s actually something we’ve already worked on,” says Krawciw.  “In November of 2025, we visited the Canadian Space Agency’s Mars Analogue Terrain and used two vehicles called the Lunar Exploration Light Rovers, which are essentially path-to-flight prototype vehicles. They’re about the size of the minivan. And we used the exact same algorithms developed on the Hunter 2.0 platforms on the two large vehicles carrying a payload that weighs about 500 kilograms.”

 

HOW INDRO SPEEDS R&D

 

InDro deals frequently with universities and other institutions carrying out research and development. Most of them want to spend their time on algorithms and research, not on building and integrating robots. That’s where InDro comes in. Head of R&D Sales Luke Corbeth works closely with such institutions, taking time to fully understand their needs and requirements. He then pulls together packages within budget. In this case, it was four Hunter 2.0 platforms, with InDro Commander integrated. Commander, which does high-speed EDGE computing and allows for additional sensors to be quickly added, allowed this team to rapidly get into their research.

“One of the more annoying parts of working with real robots is sorting out the physical and computer integration,” says Krawciw.

“So whether that’s wiring things up such that your sensors are getting power, or setting up routers so you can actually communicate with the computer onboard the robot – all of these are time-consuming and expensive tasks that essentially take away from any real research output you might rather be doing. By utilizing something like InDro Commander, you essentially cut that time to a fraction of what it originally would be.”

We’ve heard variations of this many times over the years. Researchers want to get on with their R&D, not build robots. They leave that to us.

Below: InDro’s Scott Simmie interviews Luka Antonyshyn and Alec Krawciw on our SoundByte micro-podcast.

INDRO’S TAKE

 

Because InDro itself is an R&D company, we truly understand the needs of other researchers. So we take great satisfaction not only in speeding that research with plug & play custom robots – but in seeing that research pay off. We congratulate Luka Antonyshyn and Alec Krawciw on their work, and Professor Tim Barfoot as well.

“Research like this paves the way for new and important use-cases. And it doesn’t get more novel than developing algorithms that may one day be used on the moon,” says InDro Founder and CEO Philip Reece.

“We are always eager to help universities and other R&D institutes get the right product to help accelerate their work at a competitive price point. Because we ourselves live in that research and development world, we try to go above and beyond to ensure researchers have the right tools to advance both their work – and the industry.”

Interested in a discussion? Contact Luke Corbeth for a no-pressure conversation.

InDro Commander module streamlines robotics R&D

InDro Commander module streamlines robotics R&D

By Scott Simmie

 

Building robots is hard.

Even if you start with a manufactured platform for locomotion (very common in the case of ground robots), the work ahead can be challenging and time-consuming. How many sensors will require a power supply and data routing? What EDGE processing is needed? How will a remote operator interface with the machine? What coding will allow everything to work in unison and ensure the best data and performance possible? How will data be transmitted or stored?

That’s the hard stuff, which inevitably requires a fair bit of time and effort.

It’s that hurdle – one faced by pretty much everyone in the robotics R&D world – that led to the creation of InDro Commander.

InDro Commander

WHAT INDRO COMMANDER DOES

 

InDro Commander is a platform-agnostic module that can bolt on to pretty much any means of locomotion. In the photo above, it’s the box mounted on top of the AgileX bunker (just above the InDro logo).

Commander is, as this webpage explains, “a single box with critical software and hardware designed to simplify payload integration and enable turn-key teleoperations.” Whether you’re adding LiDAR, thermal sensors, RTK, Pan-Tilt-Zoom cameras – or pretty much any other kind of sensor – Commander takes the pain out of integration.

The module offers multiple USB inputs for sensors, allowing developers to decide on a mounting location and then simply plug them in. A powerful Jetson EDGE computer handles onboard compute functions. The complete Robot Operating System software libraries (ROS1 and ROS2) are bundled in, allowing developers to quickly access the code needed for various sensors and functions.

“Our engineering team came up with the concept of the InDro Commander after integrating and customizing our own robots,” says Philip Reece, CEO of InDro Robotics. “We realized there were hurdles common to all of them – so we designed and produced a solution. Commander vastly simplifies turning a platform into a fully functioning robot.”

Account Executive Luke Corbeth takes it further:

“The Commander serves as a “brain-box” for any UGV,” he says. “It safely houses the compute, connectivity, cameras, sensors and other hardware in an IP54 enclosure.”

It also comes in several options, depending on the client’s requirements.

“There are three ‘standard versions’ which are bundles to either be Compute Ready, Teleoperations Ready or Autonomy Ready,” adds Corbeth.

“I’ve realized over time that the value of Commander is our ability to customize it to include, or more importantly, not include specific components depending on the needs of the project and what the client already has available. In reality, most Commanders I sell include some, but not usually all, of what’s in the Commander Navigate. We’re also able to customize to specific needs or payloads.”

Below: Commander comes in multiple configurations

InDro Commander

COMMANDER DOES THE WORK

 

With InDro Commander, developers can spend more time on their actual project or research – and far less time on the build.

“For end-users wanting a fully customized robot, Commander saves a huge amount of time and hassle,” says InDro Engineering Lead Arron Griffiths. “Customers using this module see immediate benefits for sensor integration, and the web-based console for remote operations provides streaming, real-time data. Commander also supports wireless charging, which is a huge bonus for remote operations.”

Commander serves as the brains for several InDro ground robots, including Sentinel. This machine was recently put through its paces over 5G in a test for EPRI, the Electric Power Research Institute.

 

5G OPERATIONS

 

Depending on the model, Commander can also serve as a Plug & Play device for operations over 4G or 5G networks. In fact, InDro was invited by US carrier T-Mobile to a 2022 event in Washington State. There, we demonstrated the live, remote tele-operation of a Sentinel inspection robot.

Using a simple Xbox controller plugged into a laptop at T-Mobile HQ in Bellevue WA, we operated a Sentinel in Ottawa – more than 4,000 kilometres away. There was no perceptible lag, and even untrained operators were able to easily control remote operations and cycle between the Pan Tilt Zoom camera, a thermal sensor, and a wide-angle camera used for situational awareness by the operator. Data from all sensors was displayed on the dashboard, with the ability for the operator to easily cycle between them.

Below: T-Mobile’s John Saw, Executive Vice President, Advanced & Emerging Technologies, talks about InDro Commander-enabled robots teleoperating over 5G networks 

 

FUTURE-PROOF

 

Platforms change. Needs evolve. New sensors hit the market.

With Commander on board, developers don’t need to start from scratch. The modular design enables end-users to seamlessly upgrade platforms down the road by simply unbolting Commander and affixing it to the new set of wheels (or treads).

Below: Any sensor, including LiDAR, can be quickly integrated with InDro Commander

Teleoperated Robots

INDRO’S TAKE

 

You likely know the saying: “Necessity if the mother of invention.”

InDro developed this product because we could see its utility – both for our own R&D, and for clients. We’ve put Commander to use on multiple custom InDro robots, with many more to come. (We have even created a version of this for Enterprise drones.)

On the commercial side, our clients have really benefited from the inherent modularity that the Commander provides,” says Luke Corbeth.

“Since the ‘brains’ are separate from the ‘body,’ this simplifies their ability to make the inevitable repairs or upgrades they’ll require. These clients generally care about having a high functioning robot reliably completing a repetitive task, and Commander allows us to operate and program our robots to do this.”

It can also save developers money.

“On the R&D side, the customizable nature of the Commander means they only purchase what they don’t already have,” adds Corbeth.

“For instance, many clients are fortunate enough to have some hardware already available to them whether it’s a special camera, LiDAR or a Jetson so we can support the integration of their existing systems remotely or they can send this hardware directly to us. This cuts down lead times and helps us work within our clients’ budgets as we build towards the dream robot for their project.”

Still have questions or want to learn more? You can get in touch with Luke Corbeth here.

2022 InDro Highlights

2022 InDro Highlights

Wow. Another year has passed.

And for InDro Robotics, it was a year marked by new products, new deployments, and multiple milestones.

We did a deep dive on the year with our Year in Review story, which you can find here. But we realise some people might prefer a condensed version. So here we go, starting with the image above.

That’s Sentinel, our rugged teleoperated robot for remote inspections. We launched that product at the very beginning of 2022. It’s been designed for remote inspections, carried out over 4G and 5G networks. We customise Sentinel’s sensors based on client needs, but the standard model comes with a 30x optical Pan-Tilt-Zoom camera, thermal sensor, and a high-res wide-angle camera that gives the operator a clear view of surroundings.

Operations are a snap, using an Xbox controller plugged into a laptop with a comprehensive dashboard. Even dense data can be streamed and downloaded in real-time over 5G. In fact, we’ve proven Sentinel’s minimal-latency capabilities from more than 4,000 kilometres away. (That took place from Bellevue, Washington State, where we were invited to demo our system by T-Mobile.)

It didn’t take long for word to get around. A couple of months after Sentinel’s launch, we were invited to put it through its paces at the Electric Power Research Institute, or EPRI. Check out this next image – it’s a frame grab from the Sentinel dashboard, and was captured during a mission at an EPRI testbed electrical substation in Lenox, Massachussetts.

InDro Robotics

There’s a lot we could tell you about Sentinel but we’re trying to keep this tight. If you’d like more in-depth details you can read this story, or reach out to superstar Account Executive Luke Corbeth here

InDro Commander

INDRO COMMANDER

A significant part of what gives Sentinel its various superpowers is an innovation we call InDro Commander. It’s a bolt-on box that contains a camera, EDGE computer, a 4G- and 5G-compatible modem and the ROS1 and ROS2 software libraries. That means it’s a snap for clients to add any additional sensors they’d like without the hassle of coding. 

You can operate any InDro Commander-enabled platform using an Xbox controller over a highly intuitive dashboard on your desktop or laptop. FYI, that box you see just above the InDro Logo (and just below the camera) in the image below? That’s InDro Commander.

DRONES

Though InDro has a stellar reputation for ground robotics, the company was founded on the Unmanned Aerial System side of things. So we’ve been busy in that arena, as well.

The most significant development of the year is a software and hardware package we call InDro Pilot. In a nutshell, it’s a bolt-on module that’s similar to Commander. It enables remote BVLOS operations over 4G or 5G, dense data throughput, simplified sensor integration – plus the ability to broadcast to nearby traditional crewed aircraft that drone operations are taking place in the vicinity. 

That hexagonal box in the image is Version 1.0 of the hardware side. We’ve since created a much smaller and lighter version, capable of transforming any Enterprise drone using the Pixhawk flight controller into a low-latency, BVLOS super-RPAS.

InDro Pilot

GROUND (BREAKING) DELIVERIES

In 2022, InDro teamed up with London Drugs to test out ground deliveries via our ROLL-E robot. 

There were two separate trials. The first, in Victoria, involved ROLL-E taking goods ordered online to a parking lot for touchless, curbside delivery. The second, in Surrey BC, involved the second generation of ROLL-E delivering goods from a London Drugs outlet to a consumer’s home. ROLL-E features 4G and 5G teleoperation, and is equipped with a total of six cameras (including two depth-perception cameras), giving the operator tremendous spatial awareness.

That’s ROLL-E 2.0, in the image below. Its secure cargo bay – which unlocks when the robot reaches its destination – can carry up to 50 kilograms.

Delivery Robot

GOOD DOG

Also in 2022, InDro Robotics became a North American distributor for the Unitree line of quadruped robots. These rugged, agile robots are well-suited to a variety of tasks, including remote inspection. In the video below, Luke Corbeth puts the entry-level GO 1 through its paces.

InDro backpack

Remember InDro Commander, the box that enables remote teleoperations and easy sensor integration? We figured a module like that could really expand the capabilities of the Unitree quadrupeds. 

And so – you guessed it – we built it. We call this device InDro Backpack, and you can see it on the robot below.

InDro Backpack

meet limo

InDro Robotics is also a North American distributor of the excellent AgileX robot line. This past year saw the introduction of a very cool machine for education and R&D called LIMO. It comes with an impressive number of features straight out of the box, including:

  • An NVIDIA Jetson Nano, capable of remote teleoperation over 4G
  • An EAI X2L LiDAR unit
  • Stereo camera
  • Four steering modes (tracked, Ackerman, four-wheel differential, and omni-directional)

It’s a powerful, SLAM-capable machine. Best of all? It’s really affordable.

LIMO

montreal marathon

Three InDro employees took part in the Montreal Marathon – but they were largely standing still.

In fact, they were operating sub-250 gram drones as part of a medical research pilot project. The drones – two were constantly in the air throughout the run – were positioned at a point near the end of the course where runners sometimes encounter medical distress. Live feeds from the drones were monitored in a tent by researchers for two reasons: To see if the aerial view could help them quickly identify someone needing help, and to help pinpoint their location so assistance could be rapidly dispatched.

The results? The drone feeds helped quickly identify and locate two runners in need of help

“The view from above when monitoring moving crowds is just incomparable,” says Dr. Valérie Homier, an Emergency Physician at McGill University Health Centre and the lead researcher on the project. 

Below: InDro pilots Kaiwen Xu, Ella Hayashi and Liam Dwyer.

Montreal Marathon

TCXpo

One of the highlights of the year was the TCXpo event at Area X.O in Ottawa. Sponsored by Transport Canada and Innovation, Science and Economic Development Canada, it was a full day of demonstrations from Canadian leaders in the world of Smart Mobility. 

InDro was there, of course, displaying our InDro Pilot-enabled Wayfinder drone, as well a *lot* of ground robots. CEO Philip Reece moderated a panel – and was also in charge of airspace for multiple drone demonstrations. That’s Philip, below, talking about aerial and ground robotics to attendees.

InDro Robotics
Drone Training

training

Speaking of drones, we also launched drone training and resource portal FLYY. Online lessons are carried out by our own Kate Klassen, widely recognised as one of the best (and most qualified) drone instructors in North America. Whether you’re looking to obtain your Basic or Advanced RPAS certificate, or want to further expand your skills, Kate’s got the goods.

If you’re looking for training for multiple people, Kate offers discounts for companies and educational institutes. You can reach her here.

it's a secret...

The other big thing happening in 2022 (and continuing in 2023) was InDro’s work with major global clients. We can’t disclose that work due to non-disclosure agreements, but we can tell you we’re busy with multiple, exciting, ongoing projects!

Finally, we closed out 2022 with another successful InDro Hack-a-Thon. Employees were given a day and a half to work on a project or process that could benefit InDro down the road. Once again, Team InDro delivered, with some amazing projects completed within the deadline. You can read all about it here

a final word...

As you can see, it’s been quite a year – and CEO Philip Reece couldn’t be happier.

“I’m incredibly proud of the work InDro accomplished in 2022,” he says. “Our engineering and sales staff consistently punch above their weight, with multiple significant milestones – including excellent revenue growth – achieved in the past year. Just as gratifying is the fact our employees love what they do.”

Very true. Now stay tuned for an even more amazing 2023.

And if you’d like to reach InDro, just give that little orange button a click. Though we’ve got plenty of robots, we’ll make sure a real human being gets back to you shortly.

Coming soon: InDro Autonomy software

Coming soon: InDro Autonomy software

By Scott Simmie

We’ve got news.

InDro Robotics is in the final stages of a new product that will vastly improve the capabilities of ground robots running on ROS2 or ROS1 Robot Operating System libraries. In short, it will transform a remotely tele-operated machine into an autonomous one. The software – no surprise here – is called InDro Autonomy.

“It’s our solution to automating the mundane tasks of outdoor navigation,” says Arron Griffiths, lead engineer at InDro’s Area X.O R&D facility in Ottawa, Ontario.

As you know, ground and aerial robots excel at jobs often referred to as “The Three Ds” – meaning tasks that are dirty, dull or dangerous (and sometimes all three). We would actually add a fourth “D” to that set and include jobs that are distant.

Think, for example, of remote locations such as electrical substations or solar farms. Currently, most robots (including many InDro products in the field) are remotely tele-operated by someone connecting with those robots over 4G or 5G networks. That’s an awesome capability, and one being put to use regularly by InDro clients. (In fact, we recently did a demonstration for T-Mobile at an Analyst’s Summit in Washington State. Attendees could operate a robot using an Xbox controller in real-time. The robot was in Ottawa – some 4,000 kilometres away.)

So tele-operation will still be with us, and is exceedingly effective for many use-cases. But there are some tasks where autonomy would be preferable.

Below: InDro’s Austin Greisman tweaks a Sentinel robot at our Area X.O facility

Robot Autonomy

Why autonomy?

 

While tele-operations are appropriate for a variety of inspection and surveillance tasks, there are cases where autonomy is a preferable option. Specifically, when a robot is repeatedly carrying out the same route/mission. This is especially true when the path becomes larger, such as inspections at solar farms. Why assign a human being to control a robot for a lengthy and repetitive task when a robot can carry it out on its own? That’s where InDro Autonomy comes in.

“Solar farms can be absolutely massive and very hard to maintain,” explains Griffiths. “Having a human walk or even drive through with a thermal camera is very inefficient. Our Sentinel ground robot, for example, can do this on its own.”

InDro’s Austin Greisman, who has been integral to InDro Autonomy’s development, puts it like this:

“Performing routine inspection checks – going to see the same thing over and over again – can be automated with this type of system,” he says. “So you just collect the data.”

 

Compatability

 

InDro Autonomy was inspired by our exclusive Commander module. It’s a bolt-on solution for ground robots that allows for rapid customisation and sensor integration. It does so by containing the complete Robot Operating System (ROS2) software library onboard, as well as an Edge computer for real-time processing. With its 4G and 5G tele-operating capabilities, open USB slots, built-in camera and slick User Interface, it’s a snap to add and integrate sensors and carry out remote missions via dashboard.

While InDro Autonomy was developed to work seamlessly with Commander-enabled robots, our developers wanted to maximise interoperability. So while Commander takes the pain out of robot customisation, you don’t have to have it to deploy InDro Autonomy.

“Not only does InDro Autonomy fully work with any platform Commander supports, InDro Autonomy will work with any ROS2-based Robot that has an IMU, GPS, and wheel odometry,” says Greisman.

Here’s a look at the Commander module, the box that’s the brains of Sentinel. It’s directly above the robot treads.

 

InDro Sentinel

How does it work?

 

With lots of coding, lol.

But there’s more than that, of course. InDro Autonomy works by recording its path via GPS during an initial tele-operated cruise through the desired route. In the case of Commander-enabled robots, that GPS trail is immensely accurate.

“We have a very high quality GPS unit in Commander that is accurate to around 5 cm,” explains Greisman. “As the robot moves, it drops GPS breadcrumbs. Later on, at any time, even if you reboot it and drop it somewhere random, it will understand where it is relative to where it’s been – so if can figure out where it needs to go next.”

 

Wait, there’s more!

 

And there is.

Greisman says InDro Autonomy has been designed for even very large spaces. Often, covering more territory requires greater onboard computational power. Not with this system.

“You can be in as big of a space as you like and there’s no computational limitation to that. What sometimes happens with autonomy systems, as you go to a bigger space you need more computational power, and this system has been designed to be efficient on low compute platforms. So this allows us to keep costs low for the client as well.”

 

Anomaly detection, alerts

 

As InDro Autonomy gets ready for a Q1 2023 release, InDro’s R&D team has a few other features it’s planning on adding to the software.

Because it’s all about autonomous missions, it’s assumed that not every inspection will be monitored in real-time. All captured data will be georeferenced and stored, of course, with the ability to review any mission remotely. But InDro thought it would be good to take things even further.

InDro is baking in the ability to customize the software per customer requests. So, for example, if components at an electrical substation should not exceed 50° Celsius, an alert will be sent by text or email if the robot detects temperatures exceeding that parameter. Engineers are also looking into integrating an early warning system for arcing, which could be triggered by its unique sonic signature. Plus, Commander-enabled robots will have the ability to autonomously snug right up to their charging docks.

So InDro Autonomy has a lot of features. And they’re coming soon.

InDro’s take

 

When InDro engineers developed the InDro Commander, we knew we had something special. And it wasn’t long before a growing number of clients realized that fact. Our Commander module became popular because it simplified a previously painstaking task, making a tough and time-consuming job easier.

We feel the same way about InDro Autonomy – and we believe our clients will, too.

What InDro does

What InDro does

By Scott Simmie

 

Have you ever wondered: What exactly InDro Robotics does?

The answer might surprise you.

InDro is often described as a research and development company. While accurate, that isn’t very explanatory. So we’ll give the first word to CEO Philip Reece.

“InDro Robotics does a lot of different things – ranging from product development to service provision to creating and building solutions for global clients,” he says. “But all of these tasks have some things in common:

“This is an engineering-first company – dedicating to inventing, enhancing and deploying technologies and products that make difficult work easier and more efficient. Customers purchase these technologies, and we are also a service provider using these InDro innovations.”

That’s a good starting point. But what does that actually look like? We thought a good way to explain this might be to look at some of the milestones the company has accomplished between September of 2021 and 2022.

There are, unfortunately, some that we’re prohibited from telling you about due to non-disclosure agreements with clients. But even without those, it’s been a very productive year.

InDro Commander

We’ll start with something that has allowed many clients to quickly customise and deploy ground robots. You’ll see this in the image below; it’s the module sitting directly on top of the robot chassis below. Specifically, it’s toward the front of the chassis above the InDro Robotics logo.

InDro Commander

The process

 

There’s an interesting backstory here. One of the things InDro is known for is building custom robots designed for specific tasks. But building robots – especially building multiple robots with different functionalities – is hard work.

We have a head start on this process, because we use the excellent platforms built by AgileX, China’s leading producer of quality robotic platforms and locomotion systems. But – and you can ask any robot builder – the real challenge is building robots that do things besides move.

You need to integrate sensors – everything from optical and thermal sensors to LiDAR and even arms with end effectors. You’ve got to figure out how to power these sensors and pull their data – a task that involves much more than wiring. With most robots, it means finding and integrating the proper software from the Robot Operating System libraries (ROS and ROS2). Then you generally need an onboard computer to process that data – along with coming up with a solution to moving that data from the robot to somewhere else.

Our engineering team thought there had to be a better way. In particular, lead engineer Arron Griffiths envisioned a module that might act like a kit to make this process much, much easier. InDro Robotics then developed and tested a module that could be added to most ground robotic platforms. It contains a powerful Jetson computer for onboard EDGE processing, multiple USB slots for adding peripheral sensors, two wide-angle cameras to give the operator a 360° view of the robot’s surroundings, and more.

That “more” includes the ability to operate the robot, in realtime, over a 5G or 4G cellular connection. The browser-based console provides data from all sensors in a clean and easy to navigate dashboard. And the operation? You can simply use an Xbox controller and operate your newly integrated robot from down the street – or across the country.

You can learn more about InDro Commander in this story. But the point here is that our engineers identified a problem and came up with a solution. Many of our products have a similar origin: Thinking of a new way to do things that’s easier and more efficient.

InDro now regularly manufactures and ships Commanders to clients globally, providing the ability to rapidly customise any ground robot utilising the Robot Operating System – without all the hassle. (If you’re interested in more details, feel free to reach out to Account Executive Luke Corbeth.)

Now that you’ve got the Commander basics, let’s take a brief look at our ground inspection robot Sentinel.

 

InDro Robotics Sentinel

Location, location, location

 

The phrase doesn’t just apply to real estate.

Many companies have valuable assets in remote locations. To inspect such locations generally means dispatching one or two employees to make the often-long trek and then simply walk around and ensure things are working as they should be. They’ll check for any signs of corrosion or wear, perhaps watch and listen for electrical arcing or test for thermal anomalies, even watch out for signs that wildlife has been chewing on wires or building nests in locations that might pose a risk. Inspectors are also frequently dispatched following violent weather events.

InDro started thinking about this problem, with a particular focus on electrical substations – often-remote and uncrewed facilities where the current from high-voltage transmission Iines is stepped-down for delivery to consumers. What if a robot could be placed on site that could carry out these inspections remotely? In fact, what if InDro took the InDro Commander module and customised a new ground robot for the task?

That’s how Sentinel came to be. The tracked robot features a 30x optical tilt-pan-zoom camera, a thermal sensor – along with any additional sensors clients would like incorporated. Sentinel can autonomously return to its wireless charging base and can literally be left on its own for months. An operator can remotely carry out regular inspections, read gauges, capture high-resolution photo and video, check for thermal anomalies – and generally accomplish nearly everything that could be carried out by a human inspector without the time and expense. Plus, Sentinel can be dispatched within minutes when necessary.

You can read more about Sentinel here. The robot also recently took part in exhaustive testing at the Electrical Power Research Institute’s (EPRI) substation test facility in Lenox, Massechusetts.

This is a great example of where one InDro innovation – the Commander module – helped pave the way for a second innovation: Sentinel.

It also contributed to a third: The ROLL-E delivery robot:

 

Delivery Robot

ROLL-E

 

ROLL-E is another beneficiary of the InDro Commander invention. This delivery robot is capable of remotely teleoperated urban deliveries, such as from a retail outlet to a home.

InDro has already completed trials with London Drugs at a Victoria location, delivering goods purchased online for curbside pickup.

InDro now has a second-generation ROLL-E, which the company will be unveiling shortly. ROLL-E 2.0 has been purpose-built to maximize integration into an urban environment with features like signals, brake and running lights – and a series of cameras (including depth perception cameras) to provide the operator with a 360° view of ROLL-E’s surroundings. Goods are contained in a secure cargo bay that opens only when the recipient interacts with a touch-screen.

And that’s not all.

InDro is currently building the InDro Backpack – a smaller version of Commander. Its purpose? To offer the same capabilities for teleoperation and high speed data transmission on the Unitree GO1 and its other quadrupeds.

Here’s a brief video demonstrating teleoperation of the GO1 as the backpack was under development; InDro anticipates the bolt-on 4G/5G system will be ready for clients later this fall.

 

What about drones?

 

Good question. While we were developing Commander, a similar but separate project was underway for aerial robots.

Canada Drones

InDro Capsule

 

See that guy on the right? That’s Ahmad Tamimi, an engineer at InDro’s Area X.O location in Ottawa.

When this photo was taken in the fall of 2021, he was deep into something called NERDS (Network Enhanced Realtime Drone project). It was a technology challenge in conjunction with the Ontario Centre of Innovation, Ericsson and the ENCQOR 5G network – a testbed corridor that runs through Quebec and Ontario.

You can find full details of that project here – and a link to InDro’s White Paper on NERDS here. But in a nutshell, Tamimi created a module similar to Commander, only for Enterprise drones using the Pixhawk flight controller. It enables operations over cellular, including real-time dense-data uploads directly to the cloud during flight. It also broadcasts to nearby traditional aircraft that a drone is operating – a tremendous boost to BVLOS flights.

Here’s a picture of that module on top of our Wayfinder drone:

Canada Drones

InDro Pilot

 

InDro didn’t stop there. The company created an entire software suite – InDro Pilot – for Enterprise drones (and, specifically, drones using the InDro Capsule).

That software makes it a snap to add and integrate other sensors onto drones and carry out low-latency flights over cellular networks. As with Commander, sensors can simply be plugged in to InDro Capsule, and the dashboard allows for drag-and-drop sensors modules to be added to the software suite. Want a winch? Simply add on the winch module and all operational controls and parameters are added to the InDro Pilot software. A robust and encrypted link between the InDro Ground Station and the drone ensures that any data collected remains secure. 

This project was completed in that 2021-2022 window we established earlier. InDro is currently creating a smaller and lighter InDro Capsule for commercialization of the entire InDro Pilot system. 

Here’s a screen grab of the winch software module:

Canada Drone

One more time

 

And here’s a look at the complete system…

Again, if you’d like a more thorough look at that system you’ll find far more details here.

Drones Canada

That’s not all…

 

As mentioned, it’s been a highly productive year at InDro. We’ve flown drones in the NRC Wind Tunnel in Ottawa for research on urban wind tunnels. The company has partnered with UBC, Honeywell and others on a major research project involving flights over 5G and using AI software to precisely predict energy demands and costs of any planned drone mission.

As drones begin deliveries at scale in the future, the data being obtained about the capabilities of 5G networks to handle multiple drones simultaneously – as well as costs – will be tremendously useful to the industry-at-large.

All this, while carrying out service provision for clients on a global scale, including this mission in Saudi Arabia. (That’s our photogrammetry/GIS specialist Eric Saczuk in the photo).

Drones Canada

Before we forget…

 

InDro was also in the news this year for its role in the Drone Detection Pilot Project at the Ottawa International Airport.

During the protests in the nation’s capital, data obtained by the system revealed that scores of unauthorized drone flights were taking place in restricted airspace – including above Parliament Hill, over 24 Sussex Drive, and even near embassies and other sensitive locations.

InDro takes part in this project – and supplies the drone detection equipment for free – because there’s valuable data being obtained that contributes to both safety at YOW and informed policy and procedures.

In fact, the news even made the cover of WINGS magazine:

Drone detection

Wait, there’s more!

 

Hard to believe, but there is (and congrats for sticking through this long-ish read!).

InDro reached several other milestones between the fall of 2021 and 2022. The company can’t, unfortunately, share details of these due to non-disclosure agreements. But innovative solutions have been created for global clients. In one example, a prototype robot was so successful that InDro received orders for many more.

On top of that, the company has worked closely with industry and regulatory partners during this period, including delivering InDro Pilot-enabled drones to Transport Canada and assisting RPAS parachute manufacturer AVSS with testing of its latest product. 

Drones Canada

InDro’s Take

 

With an agile and motivated team, InDro Robotics has created multiple new and innovative products in the course of a single year. Some of these were created specifically for clients, while others were organic in nature. The development of InDro Commander has paved the way for multiple robots (Sentinel, ROLL-E, ROLL-E 2.0). In addition, the company has shipped custom Commander-enabled robots to clients – including one fully customized for Solar Farm inspection. Many clients are now order Commander modules to make the customization of their own ground robotics platforms a vastly easier process.

In addition, the development of the InDro Capsule and InDro Pilot system for Enterprise drones will soon allow clients to easily customize their RPAS with additional sensors, along with secure high-data bandwidth (direct to Cloud) and remote teleoperations via console over cellular networks. Stay tuned for more on that.

CEO Philip Reece got the first word in this summary; he also gets the last:

“I’m justifiably proud of our team for the multiple milestones we’ve surpassed during the past year,” he says. “InDro has created numerous products – and participated in multiple projects – where we’ve been able to push the envelope. Every single one of these products and processes uses technological innovations to make hard jobs easier, or to significantly expand the capabilities of drones and robots. The team has really hit its stride.”

Hopefully, this gives you a much better idea of What InDro Robotics Does. And why we proudly call ourselves an R&D company.

 

InDro launches monthly newsletter

InDro launches monthly newsletter

A word (or two) from InDro Robotics

 

Welcome to the first in a new series of monthly newsletters from the InDro Robotics team!

These newsletters will cover the latest news from InDro Robotics – including the inside story from our R&D facilities (at least the stuff we can tell you about!).

First up? The big news: We have officially released the new InDro “Commander” – a module that vastly simplifies the challenges of building and customizing a teleoperated UGV. Commander is about the size of a small toaster oven. It bolts onto any platform and simply connects with two wires for power.

But don’t let that simplicity fool you: This is one mighty box, containing not only an NVIDIA processor for Edge computing, but high-speed USB ports for sensor management. Just as importantly, it contains the Robot Operating System (ROS) libraries required to make everything work together.

You might have seen our news release announcing the product. If not, here’s a teaser:

InDro Robotics

(You can find the entire release, which includes links to images, a video and a complete story on the product, right here.)

“The product also leads the way with a unique feature for developers: It is a platform agnostic solution – meaning that it can work with any platform that developers need,” explains Anthony Guolla, a robotics engineer specializing in Client Sales and Support. 

“Whether your platform of choice is AgileX Robotics or any other major provider, The InDro Commander has your hardware, computer, and integration covered. InDro and our partners have already taken large strides in deploying real-world solutions accelerated by Commander and we are excited to share it with the rest of the world in 2022!” 

InDro Commander

Commander and Sentinel

 

If you’ve had a chance to read the release, you’ll know Commander evolved organically from our own work designing robots for clients and for R&D. Every time we went to integrate sensors and make the robot operational, we were running into common but time-consuming steps: Finding power for the sensors, installing Robot Operating System (ROS) software, and generally making the whole package work. (Trust us, there are a *lot* of steps involved.) 

Commander has been designed to eliminate the painstaking stuff, allowing you to quickly add the sensors of your choice and operate the robot using our web-based console. 

It has also allowed us to rapidly iterate new machines, and we’re particularly proud of a Commander-powered robot we call “Sentinel.”

 

Inspections, simplified

Inspection Robot

Sentinel is a purpose-built inspection and surveillance robot, ideally suited to applications like electrical substations. These are the places where the high-voltage power carried by transmission lines is stepped-down for delivery from the substation to homes and other customers. Such facilities are often located in remote areas, difficult to reach for regular inspections by human beings.

“Right now, highly trained technicians make lengthy journeys between sites and frequently arrive without the proper resources to solve the problem on-hand,” explains InDro Account Executive Luke Corbeth.

“Seldom are these inspections, which include meter reading, temperature control and checking equipment conditions, done as frequently as they could be. Without sufficient maintenance, equipment will fail and result in an outage, which is financially detrimental to business and inconvenient for consumers.”

With Sentinel, regular inspections can be carried out remotely by a human operator who is hundreds, even thousands of kilometres away via the internet. Using Sentinel’s Pan-Tilt-Zoom camera (with 20x optical zoom and thermal sensor), the operator can check out even the tiniest detail from afar.

Check out this image, taken from the web-based Sentinel Console:

Inspection Robot

Potential clients who have been given a sneak preview are impressed.

“We’ve received an overwhelmingly positive response from partners and utility companies for this solution. As a result, we’re making it a priority to deploy more of this technology across North America in 2022,” says Corbeth.

Sentinel can be deployed on a number of platforms, depending on the terrain and user requirements. Our first Sentinel is based on the AgileX Bunker platform. We selected Bunker because it’s rugged and nearly impervious to inclement weather. The track-based locomotion system handles well in snow, mud and other challenging conditions and terrain. But Sentinel is also offered with wheels, and even quadripedal or other form factors.

If you’re interested in learning more about Sentinel’s capabilities, hit us up here.

Learning

 

InDro Robotics has long been a champion of quality instruction when it comes to drones. We believe in ensuring that prospective pilots have access to the very highest quality learning materials and methods, with Subject Matter Experts leading the way. We also believe in community, where those following a learning path can learn from, inspire, and support one another.

That’s why we’re particularly excited about an initiative we’re launching led by Kate Klassen. Kate, as you might already know, is a seasoned veteran of both crewed aviation and UAVs. She was a driving force behind the excellent educational work carried out by Coastal Drones – and is a member of the Canadian Drone Advisory Committee, also known as CanaDAC.

If you’re interested in obtaining your Remotely Piloted Aircraft Certificate, you can sign up here. (And, trust us on this, there’s much more to come!)

Drone Training

“I am so excited to be back in the instructor seat with new, up-to-date training to share with the industry,” says Klassen.

“Already this year we’ve launched ground school for basic pilots, updated our advanced ground school, have the first in a series of ‘Flyy Guides’ published and are creating a community space for more casual learning and sharing with others in the industry. And this is just us getting started!”

From the top

Finally, a word from CEO Philip Reece.

“This is going to be a very exciting year at InDro Robotics. Commander is a hugely innovative solution to the hard work of building robots – and end-users have already seen tremendous efficiencies. Sentinel takes full advantage of the Commander module, meaning clients now have access to a proven teleoperated inspection solution that can be quickly modified with additional sensors and capabilities down the road. I’m immensely proud of the work InDro’s engineers have put into these solutions.

Wait, there’s more!

“InDro is also pleased about Kate’s forthcoming community platform, which will complement our learning portal. She is a total professional, and the hard work she has been putting in reflects this. I don’t want to give too much away, but let’s just say we look forward to formally unveiling the full platform shortly.”

Give us a shout

Questions? Comments? We’re always happy to answer queries and read feedback. Hit us up here.

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