Showing posts with label OnStar. Show all posts
Showing posts with label OnStar. Show all posts

Autonomous Cars – Part 2: The ABCs ADAS



Kaivan Karimi
SVP of Strategy and Business Development
BlackBerry Technology Solutions (BTS)


Advanced driver assistance systems (ADAS) is one of the most important of the many different technologies going into the connected autonomous car of the future. 
ADAS is evolving from discrete single function systems, such as blind spot monitoring and lane departure warning to integrated active safety systems and automated driving.  With ADAS high performance computing is intersecting with the need for functional safety, changing the very nature of the hardware and software in these next generation systems. So, a flexible, safe and stable software environment that leverages the performance advances in silicon while maintaining ISO 26262 functional safety certification is critical.  In an ADAS based car, software is the nervous system that works with the brains of the operations, which are  Microprocessors/Microcontrollers.  Together they work seamlessly with a range of other hardware components, some of which are noted below.


Radar Systems
Radar technology collects information around the vehicle and feeds it to the ADAS’s domain controller managing sensor fusion.  Several subsystems are part of the package such as a 77 GHz radar system that enables high precision and scalability from short to mid to long range detection; 24 GHz radar for high-demand features, such as rear cross traffic alert or blind spot detection; and Light Detection and Range (LIDAR) for adaptive cruise control, accident avoidance and mitigation and object detection. LIDAR is like a light-based radar that sends out short pulses of invisible scanning laser light, and based on how long it takes to see the reflection, calculates how far away it is.  It then creates a 3-D image of the surroundings of the car with high accuracy. 

Vision Processing
 A range of cameras and sensors combine to see the world.  External cameras assist with lane departure warnings, forward collision warnings, traffic sign recognition, and pedestrian recognition. Internal cameras provide information related to the driver’s focal point and behavior so that the ADAS system can react accordingly. These can be augmented with 3D capabilities that enable new HMI user experiences, such as gesture recognition and control of cabin button functions, or infotainment systems.  Ultrasound is also used for close-end object detection and will be used in park-assist applications, where a typical car would have between 10 to twelve sensors.

GPS
Global Positioning Systems are satellite-based navigation systems using a network of 24 satellites that were put in orbit by the U.S. Department of Defense (DoD) for military applications. In the 1980s the US government made the system available for civilian use. Galileo (EU), GLONAS (Russia), BeiDou (China), and IRNSS (India) are examples of other satellite-based navigation systems being developed around the world.  They have accuracy of within 10 to 50 feet for 95% of the time, with most providing a worst case pseudo-accuracy of 7.8 meters at a 95% confidence level. The actual accuracy depends on factors such as atmospheric effects, line of site clearance to the satellites, and receiver quality. To improve GPS location accuracy to centimeter-level accuracy, systems make use of ground-based reference points in combination to the satellite signal. These types of systems are called “differential GPS,” and a great example is that which comes from rental car companies.

For a self-driving car you need to know which lane a car is in and where within that lane is in reference to other cars and structures surrounding it, and all of this must be updated at high rates in real-time. This requires computational intensity as well as augmented GPS functionality with accelerometers, altimeters, gyroscopes, and a tachometer/odometer to achieve finer measurements of the position of the car under various conditions.

V2X
V2X communication refers to the exchange of information from a vehicle to anything that may affect the vehicle, and vice versa.  V2X stands for Vehicle-to-Vehicle (V2V), Vehicle-to-Infrastructure (V2I), Vehicle-to-Pedestrian (V2P), Vehicle-to-device (V2D), Vehicle-to-grid (V2G) and for all practical purposes, Vehicle-to-Everything.  (You can see that the “X” is the catch-all variable.) 

V2X is considered a cooperative approach between cars and their environment to make a more effective means to avoiding accidents and traffic congestion. For V2X to really work it needs to be rolled out with adoption rates of greater than 95%, and from that perspective it may be a few years before the infrastructure is put in place. The communication technology most often talked about for V2X is based on Dedicated Short Range Communication (DSRC) operating at the 5.9 GHz frequency based on 802.11p 

Wireless Access for Vehicular Environments (WAVE). The architecture, message protocols, and security standards are based on IEEE 1609.x in the US and various of ETSI layer standards.  Note that cryptographic security must be built in so that the signal sent and received can be trusted.  False or corrupted signals can produce dire results.

V2X will establish a hybrid access network and enable the flow of information regarding traffic delays and hazard warnings (e.g. road flooding, electrical poles down, or even cars driving in the wrong direction, and others) in a real time manner.

Telematics
A telematics system mixes the functionalities of telecommunications and informatics for a car, and a good way to explain the range of functionalities in a telematics system is to take a closer look those supported by OnStar from General Motors. OnStar includes a cellular modem, GPS, connections to a variety of sensors (some of which are dedicated to reporting significant crashes), a backup battery, and a roof mounted antenna with a range that is better than a typical cellphone. 

The box itself gets a “black-box” treatment, and is mounted in the back of the car to shield it from most crashes. The system is connected to a call center, which in turn can report accidents to a public safety answering point such as a 911 operator, and contact garages if only simple towing services or mechanical help is needed. After any incident, the call center operator contacts the passengers of the car, getting more information and assuring them that help is on the way. Emergency and roadside assistance along with basic vehicle diagnostics are the most popular services for most Telematic systems. 

Over time, a host of other services have been added from weather reports and sports scores, to traffic information, geo-fencing, and stolen vehicle tracking. The list of automakers who already offer telematics services include GM, Chrysler, Ford, Lincoln, Audi, BMW, Mercedes-Benz, Volkswagen, Porsche, Jaguar, Rolls-Royce, Volvo, Mini, Toyota, Infiniti, Lexus, Mazda, Nissan, and Subaru. 

Domain Controllers and Micro Processor/ Micro Controller Units (MPUs/MCUs)
MCUs and MPUs are the physical hardware brains of the whole vehicle operation, and combined with powerful sensor fusion algorithms are what turn a car into a robot. With the number of sensors feeding situational awareness data in real-time, one can see that high-speed and high-bandwidth data processing are at the heart of automated driving.  High performance Electronic Control Units (ECUs) accept the sensor inputs that monitor the automobile’s constantly changing environment, and fuse those data at speeds of greater that 1Gb/sec to make safe decisions.  As the table shows, this will ultimately shift the burden of “situational awareness and response” from the driver to the car. High-speed decision making at real-time speed, dealing with the amount of data discussed above, requires secure, reliable, and very fast processing computers. 
  
The growth of electronics in cars has resulted in double-digit growth of the number of ECUs being used in all car segments. Today’s embedded vehicle functions are shared between up to 100 ECUs and are connected over several buses, and typically uses 6-8 operating systems. This decentralized system has drawbacks in increased complexity, weight, and overall cost of the vehicle. The trend now is to move from 80-100 decentralized ECUs scattered across the vehicle, to 8 to 12 domains with their respective mega-ECUs, or Domain Controllers, which among many other things reduces the complexity of the system.



The next blog will address the software architectural issues to be considered when creating connected autonomous car of the future.   For more see the QNX web site.


_______________________________________________________________________________
Kaivan Karimi is the SVP of Strategy and Business Development at BlackBerry Technology Solutions (BTS). His responsibilities include operationalizing growth strategies, product marketing and business development, eco-system enablement, and execution of business priorities. He has been an IoT evangelist since 2010, bringing more than two decades of experience working in cellular, connectivity, networking, sensors, and microcontroller semiconductor markets. Kaivan holds graduate degrees in engineering (MSEE) and business (MBA). Prior to joining BlackBerry, he was the VP and General Manager of Atmel wireless MCUs and IOT business unit.

TWICE applauds QNX OS-powered OnStar 4G LTE with VIP Award

Megan Alink
Our customers are all VIPs, and we love nothing more than seeing them shine with industry recognition. Recently, TWICE named the OnStar 4G LTE powered by the QNX Neutrino OS to its list of Very Important Product (VIP) Award winners in the in-dash navigation multimedia receivers category.

The product builds a Wi-Fi hotspot into the vehicle so customers can stay online easily while they’re on the go. Up to seven devices, including computers, smartphones, video game consoles and tablets, can be paired to the hotspot for use any time the car is on. OnStar 4G LTE also gives customers access to the same features that OnStar is known for, including emergency assistance, security, navigation and vehicle diagnostics.

Congratulations to our customer OnStar and the rest of the TWICE VIPs! You can view the full list of categories and winners on the TWICE website.

It seems like only yesterday...

By Megan Alink, Director of Marketing Communications for Automotive

What were you doing on September 14, 1999? It was likely an inauspicious day for most people, but for QNX, the date represented our official entry into the automotive market:


Don’t get me wrong — QNX was no tentative newcomer on the scene. After all, we were marking almost two decades in the embedded software business. QNX OS technology was already powering mission-critical systems for credit card processing, energy generation, healthcare, mail sorting, precision manufacturing, mining, security, and warehouse automation worldwide. (Whew!) But it was time to take that reliability and flexibility to more markets, ones with needs similar to our existing customer base. Enter automotive. (And we did.)

Today, we are pleased to be able to say that QNX software is found in more than 60 million vehicles on the road. In telematics systems like OnStar. In infotainment services like Volkswagen's RNS 850 GPS navigation system and Ford SYNC 3. In the digital instrument clusters of the state-of-the-art Audi TT and Mercedes S-Class Coupé.

60 million is a very big number. Obviously, we wouldn’t have reached this milestone without the support of our Tier 1 customers who build QNX into their systems every day, the 40+ automakers who choose these QNX-based systems, and our ecosystem of automotive partners who enrich our offering with their market-leading innovations. We want to thank all of these companies for the exciting and challenging opportunities they give us. Here’s to the next 60 million!

How will HTML5 play out in the car? A video series roundup

Last Fall, my colleagues Andy Gryc and Nancy Young launched a video series on HTML5 in the car. To their credit, they took the surround-sound approach and asked a variety of people from the automotive ecosystem to weigh in on the topic. So far, they've interviewed executives from Audi, OnStar, and TCS, as well as automotive and web-technology experts from QNX Software Systems and RIM.

Naturally, everyone they spoke to has a different take on the topic. So I thought I'd bring all the videos together in one place to give you an overall view of how the industry sees HTML5 playing out in the car. Grab some popcorn, dim the lights, and check them out:

Kickoff video
Andy Gryc kicks off the series with his take on why he believes HTML5 is poised to become the foundation for next-gen automotive apps and HMIs:




Interview with Steve Schwinke of OnStar
Andy catches up with Steve Schwinke, director of advanced technology for OnStar, who believes that HTML5 can change the auto industry for the better. (Did you know? The OnStar RemoteLink App for BlackBerry was coded in HTML5):




Interview with Michael Camp of TCS
Andy Gryc sits down with Michael Camp, director of engineering for in-car telematics at TeleCommunication Systems (TCS), to get a software supplier's perspective on HTML5. Michael is a very articulate guy, and worth a listen:




The myth buster interview
Andy meets up with Kerry Johnson of QNX to poke holes into the most common myths about HTML5. They discuss how HTML5 apps can deliver snappy performance, run without a Web browser, and even work without an Internet connection:




Interview with Matthew Staikos of RIM
Andy talks with Matthew Staikos, web-technology manager at RIM, about the impact of HTML5 on hardware options, memory usage, and app stores:




Interview with Sheridan Ethier
Andy meets up with Sheridan Ethier of QNX to get a developer's perspective on HTML5:




Interview with Mathias Haliger of Audi
And last but not least, here's the most recent installment in the HTML5 video series, which we featured a couple of week ago. Mathias Haliger, head of MMI system architecture at Audi AG, speaks with QNX marketing VP Derek Kuhn about the importance of HTML5 to his company and why he considers it a game changer:


 

OnStar RemoteLink app comes to BlackBerry smartphones

This just in: The RemoteLink App from OnStar, which allows smartphone owners to remotely start their vehicles, check fuel levels, and lock or unlock their doors, is now available for the BlackBerry Bold 9900 and 9930 phones.

RemoteLink has been available for iPhone and Android phones, but many OnStar subscribers have asked for a BlackBerry version of the app. In response, Onstar wrote a new version for the BlackBerry platform, in HTML5.

“Writing the app using HTML5... positioned us to be more flexible supporting new phone operating systems,” said Steve Schwinke, director of advanced systems development for OnStar.
Opening screen
for RemoteLink

© GM Company 

In 2011, OnStar added navigation to RemoteLink, allowing users to search for a destination on their smartphone and send it directly to their vehicle. Users can then access the route through the QNX-powered OnStar system.

By leveraging OnStar’s connection to the vehicle, the app can report on oil levels, tire pressures, fuel level, and lifetime miles per gallon. It also offers remote commands, such as remote start, door lock/unlock, and horn/light activation.

According to OnStar, a total of 821,000 smartphone owners actively use the RemoteLink app.

To read OnStar's press release, click here. To download the RemoteLink app from BlackBerry App World, click here.

On a related note, here's a conversation between QNX's Andy Gryc and OnStar's Steve Schwinke. The topic: how HTML5 can benefit the auto industry.


 

QNX and its customers nab finalist spots in 2012 Telematics Update awards

Every year, the world's top automakers and automotive suppliers vie for a chance to win a Telematics Update award. In 2011, for example, Audi, BMW, Hyundai, OnStar, and Toyota took top honors in categories such as best infotainment solution, best safety technology, and best cloud-based application.

These companies may have won in a variety of categories, but they share one thing in common: they all use the QNX platform.

As with 2011, so for 2012. If you look at this year's shortlist, you'll see that several QNX customers and technology partners are again in the running. The finalists include GM, whose MyLink system is up for best global infotainment solution, and OnStar, whose FMV system is up for best aftermarket solution.

This pattern is nothing new. Back in 2009, for example, more than 50% of the Telematics Update award winners either worked with QNX as a technology partner or used the QNX platform in their in-car systems.

And did I mention? QNX itself is up for a Telematics Update award this year! The QNX CAR 2 application platform, which drove home with a Best of CES Award in January, is a finalist in the industry newcomer category.


Two of the QNX-powered systems shortlisted for this year's Telematics Update awards:   
GM MyLink and OnStar FMV

It's hard to know what pleases me more: that QNX has been singled out for an award, or that QNX has once again helped its customers make the shortlist. Either way, I'm stoked.

The winners will be unveiled June 5, just prior to the Telematics Detroit show. In the meantime, my congratulations to all the finalists.
 

Setting the Pace for Automotive Electronic Innovation

Welcome to the first installment in a series of guest posts from Paul Sykes of Freescale’s driver information systems team.

Recently, I traded in my MY2002 SUV for a new MY2012 vehicle. At the time, the MY2002 was quite advanced in its in-cabin electronics and styling, but wow — times have changed! Gone are the aftermarket satellite radio and PND that were attached, with wires dangling, at various places in my cabin.

The newest generation of vehicles offers complete and total integration, including new features that didn’t exist in 2002, such as USB/iPod interfaces, HD Radio, and a rear view camera.

But here’s the problem. I work in this great industry of automotive electronics and have some view of what’s coming in the next wave of vehicles. It’s both a blessing and a curse. Do I buy now or wait for the next model year? It’s like trying to time when to jump into your next cell phone or tablet purchase, only the time scale is a bit different.

The pace of electronic innovation has increased in this industry and you don’t have to wait 10 model years (like I did) to see it. It’s exciting to be a part of the supply base that is helping this industry move faster while maintaining some of the highest standards of quality and reliability over a long product life.

Fundamentally, at the heart of every embedded electronic vehicle system, incoming data needs to get processed and acted upon, using complex software algorithms. At Freescale, sensor and processor innovations make the future possible by doing these fundamental elements better, faster, and more reliably.

Ecosystem partners like QNX Software Systems provide many of the complex algorithms required to realize infotainment and instrument cluster systems. These same systems are often powered with Freescale i.MX processors.

In the latest generation, the i.MX 6 Series, Freescale has provided the most scalable line-up of products available. Scalability means not only performance and function scalability, but also pin-to-pin hardware compatibility across the entire series. This is one example of how the processor can help pick up the innovation pace. With hardware and software compatibility, system makers can develop more products to meet a broader range of market needs, in a shorter amount of time.


The Freescale i.MX 6 Series has been chosen to power the next-generation
GM OnStar system.

In future posts, I will offer Freescale’s perspective on many of the current trends in driver information systems as well as our product collaborations with QNX to bring unique value to the industry.


Here’s a little more about Paul and the Freescale Driver Information Team:

Paul has more than 15 years’ experience in the semiconductor industry, including product development, program management, and marketing positions. For the past several years, Paul has lived in Michigan and focuses exclusively on the automotive telematics, audio/infotainment, and instrument cluster application spaces.

Freescale’s Driver Information Team is driving the global strategy and product development for solutions to address the multitude of applications in the rapid growth and innovation area of Driver Information Systems. This includes instrument cluster, graphics displays, audio and infotainment, and telematics.
 

OnStar Interview: Standards, HTML5, and the OEM

Have you ever explained to your kids why the solid rocket boosters on the Space Shuttle are the width of two Roman warhorses standing side-by-side? If you haven’t, I suggest you do. The incredulous looks are well worth it. For additional bonus laughter from the younger crowd, you may want to add in the fact that we’re talking about the rear ends of horses.

What this little bit of trivia does for us, the 'older' crowd, is offer a lesson in standardization. A set of specs, rules, measurements, and so on can have long-lasting repercussions. And so, on the one hand, it behooves us to choose wisely; while on the other hand, it reminds us about the importance of being open to change.

Steve Schwinke, director of advanced technology for OnStar, is among a growing number of industry leaders who believe that HTML5 has the potential to dramatically change our industry for the better. Steve believes in strength in numbers and has great faith in the OEM community to work together to help shape the standard and promote its widespread adoption.

Here’s what Steve had to say about HTML5 when we visited him in Detroit just before the holidays in December.



This interview of Steve Schwinke is the fifth in a series from QNX on HTML5.

CrackBerry posts first peek at OnStar RemoteLink for BlackBerry PlayBook

Paul Leroux
This morning at CES, CrackBerry.com met up with QNX's Andrew Poliak for a walkthrough of the new OnStar RemoteLink app for the BlackBerry PlayBook.

If you aren't familiar with RemoteLink, it provides a very cool and powerful connection to OnStar-equipped vehicles. From the convenience of your tablet or phone, you can access gas mileage, tire pressure, and other information in real time; you can even remotely start your vehicle and unlock its doors.

Cooler yet, the new version running on the PlayBook boasts a user interface built entirely in HTML5. But enough blather from me. Roll the tape...



Did you know? QNX is the core OS for the PlayBook, but it's also the OS for OnStar and OnStar FMW.
 

Video: The secret to making hands-free noise-free

 
Explaining a highly technical product to a broad audience is tough. To succeed, you must reach out to people on their own terms, without being condescending. Most people love a good explanation, but everyone hates being talked down to.

Case in point: The QNX Acoustic Processing Suite. This software runs in millions of cars and offers a benefit that everyone can relate to: clear, rich, easy-to-understand hands-free calls. But once you start explaining how the suite does this, it's easy to get mired in technical jargon and to forget the bigger picture — something that even a technical audience wants to see.

So we dropped the jargon and opted for a creative approach. It involves a marching band, a rock guitarist, and, for good measure, an electric fan with a really long extension cord. Seriously.

Intrigued yet? Well, then, grab some popcorn and dim the lights:




Interested in learning more about this technology? Check out the acoustic processing page on the QNX website.

BTW, companies that use the QNX Acoustic Processing Suite in their products include OnStar, whose FMV aftermarket mirror recently won a CES Innovations Design and Engineering Award.

Posted by Paul Leroux
 

QNX-powered OnStar FMV drives home with CES Innovation award


Paul Leroux
This just in: The OnStar FMV aftermarket mirror, which brings the safety and security features of OnStar to non-GM vehicles, has won a coveted CES Innovations Design and Engineering Award.

To clinch this award, a product must impress an independent panel of industrial designers, engineers, and trade journalists. Speaking of impressions, it seems that OnStar FMV also made a hit with the folks at CNET, because they've chosen it as one of their Top Holiday Shopping Picks for 2011.

As you may have guessed, OnStar FMV uses QNX Neutrino as its OS platform. It also uses the QNX acoustic processing suite, which filters out noise and echo to make hands-free conversations clear and easy to follow. The suite includes cool features like bandwidth extension, which extends the narrow-band hands-free signal frequency range to deliver speech that is warm and natural, as well as intelligible.

Have time for a video? If so, here's a fun look at FMV's features, including stolen vehicle recovery, automatic crash response, turn-by-turn navigation, hands-free calling, and one-touch emergency calling:


 

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