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L.A. Show Favorites and driving a custom Land Rover Defender | Autoblog Podcast #757
Wed, Nov 23 2022In this episode of the Autoblog Podcast, Editor-in-Chief Greg Migliore is joined by News Editor Joel Stocksdale. We recap the Los Angeles Auto Show and discuss what it was like and what our favorite reveals were. We also discuss a few of the cars we've been driving including a restomod Land Rover Defender from Osprey Custom Cars and our long-term Kia EV6 GT-Line. Plus, we discuss the GMT400 Chevy and GMC trucks starting to rise in value. Send us your questions for the Mailbag and Spend My Money at: Podcast@Autoblog.com. Autoblog Podcast #757 Get The Podcast Apple Podcasts – Subscribe to the Autoblog Podcast in iTunes Spotify – Subscribe to the Autoblog Podcast on Spotify RSS – Add the Autoblog Podcast feed to your RSS aggregator MP3 – Download the MP3 directly Rundown 2022 L.A. Auto Show Editors' Picks Cars we're driving Osprey Custom Cars Land Rover Defender 2022 Kia EV6 GT-Line GMT400 GM Trucks Feedback Email – Podcast@Autoblog.com Review the show on Apple Podcasts Autoblog is now live on your smart speakers and voice assistants with the audio Autoblog Daily Digest. Say “Hey Google, play the news from Autoblog” or "Alexa, open Autoblog" to get your favorite car website in audio form every day. A narrator will take you through the biggest stories or break down one of our comprehensive test drives. Related video: This content is hosted by a third party. To view it, please update your privacy preferences. Manage Settings.
Jaguar Land Rover backs Arc startup that sells $100,000 electric motorcycles
Wed, Nov 7 2018Before it even put its first motorcycle on the road, new startup Arc reeled in a major player to back its ambitious product plan. In conjunction with the reveal of the fully electric Vector superbike at the Esposizione Internazionale Ciclo Motociclo e Accessori ( EICMA) show in Milan, Jaguar Land Rover (JLR) announced it is placing capital in Arc, using JLR's investment company InMotion Ventures. Arc claims the Vector is the first all-electric motorcycle with integrated Human Machine Interface (HMI) to come to market. Arc, not to be confused with Keanu Reeve's Arch motorcycle company, has a pretty typical mission statement: "To use progressive design and technology to transform people's relationship with an automative experience. For us, for you, for our planet." At the core, Arc wants to make connected, clean, exclusive superbikes, and the Vector is its first try. Although Arc didn't get into the nitty gritty details about the make-up of the bike, it did give some surface specs and information. The bike's structure is built using a carbon composite to create a "unique Arc battery monocoque." Weight is also kept low using carbon fiber swing arms. There is no mention of the size or type of electric powertrain, but Arc claims it will have a highway range of about 120 miles or a city range of 170 miles on a single charge. Arc says it will be able to sprint from 0 to 60 miles per hour in 2.7 seconds and has a top speed of 124 mph. Stopping power comes from a Brembo brake system, while ride and handling relies on Ohlins dampers. The launch does not stop at the motorcycle, but includes gear, as well. The Vector links up with a jacket and a helmet for a fully connected experience. Partnering with U.K.-based impact protection design company Knox, Arc created the Arc Pilot System. Using audio, the armored Origin riding jacket provides haptic feedback based on numerous riding inputs to help keep the driver safe and aware. Furthermore, Arc linked up with luxury helmet maker Hedon to build the WiFi-connected Zenith helmet that houses an integrated projection heads-up display. In addition to showing things such as speed or battery life of the bike, the helmet uses a built-in rear camera to display other vehicles in the rider's blind spots. The rider can command the system using controls on the bike or via voice commands.
Jaguar Land Rover and Cambridge have developed a touchless touchscreen
Thu, Jul 23 2020Jaguar Land Rover and the University of Cambridge are working on new touchscreen technology that eliminates the need to touch the screen. Counterintuitive, right? It’s called “predictive touch” for now, in part because the system is able to predict what you might be aiming for on the screen. The video at the top of this post is the best way to understand how users will interact with the tech, but weÂ’ll do some more explaining here. You simply reach out with your finger pointing toward the item on screen that you want to select. ItÂ’ll highlight the item and then select it. HereÂ’s how it works, according to the University of Cambridge: “The technology uses machine intelligence to determine the item the user intends to select on the screen early in the pointing task, speeding up the interaction. It uses a gesture tracker, including vision-based or radio frequency-based sensors, which are increasingly common in consumer electronics; contextual information such as user profile, interface design, environmental conditions; and data available from other sensors, such as an eye-gaze tracker, to infer the userÂ’s intent in real time.” Cambridge claims that lab tests showed a 50 percent reduction in both effort and time by the driver in using the screen, which would theoretically translate to more time looking at the road and less time jabbing away at the screen. If the prediction and machine learning tech is good enough, we could see this resulting in a reduced number of accidental inputs. However, on a certain level it almost sounds more difficult to point at a screen while moving than it does to actually touch a section of that screen. Without using the tech and its supposedly great predictive abilities, we canÂ’t come to any grand conclusions. One comparison you may already be thinking of is BMWÂ’s Gesture Controls. ItÂ’s already been addressed with a subtle diss from Cambridge: “Our technology has numerous advantages over more basic mid-air interaction techniques or conventional gesture recognition, because it supports intuitive interactions with legacy interface designs and doesnÂ’t require any learning on the part of the user,” said Dr Bashar Ahmad of the University of Cambridge. Of course, this tech can be used for much more than just vehicle touchscreen control. Cambridge says it could be integrated into ATMs, airport check-in kiosks, grocery store self checkouts and more.