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Jaguar Land Rover to cut workforce by 2,000 in push toward electric future
Thu, Feb 18 2021Jaguar Land Rover said on Wednesday it would cut 2,000 jobs from its global salaried workforce, just days after announcing its luxury Jaguar brand will be entirely electric by 2025 and e-models of its entire lineup will be launched by 2030. "The full review of the Jaguar Land Rover organization is already under way," the company said in an emailed statement. "We anticipate a net reduction of around 2,000 people from our global salaried workforce in the next financial year," it said. However, it added that the organizational review did not impact hourly paid, manufacturing employees. JLR, owned by India's Tata Motors, said earlier that its Land Rover brand will launch six fully electric models over the next five years, with the first in 2024. Known for its iconic, high-performance E-Type model in the 1960s and 1970s, Jaguar faces the same challenges as many other carmakers as it transitions to electric vehicles while trying to retain the feeling and power of a luxury combustion engine model. Last month, Tata Motors said it was concerned by semiconductor shortages and Brexit-related supply disruptions as its luxury car sales recover, although the Indian automaker added these had not yet hit production. Tata Motors posted three straight quarters of losses as the COVID-19 crisis dented sales, exacerbating uncertainties over Britain's exit from the European Union, weak demand and rising costs, but had bounced back to clock a profit in its third quarter to the end of December. The 2,000 reduction in JLR's non-factory jobs was reported earlier on Wednesday by Sky News.
Jaguar Land Rover's latest tech makes roads safer for bikes [w/video]
Tue, Jan 20 2015Safety in automobiles isn't just about protecting the occupants anymore. It's about protecting pedestrians who might be struck by an automobile, and as Jaguar Land Rover is demonstrating, it's about protecting cyclists as well. The latest experimental safety system from the British automaker is called Bike Sense, and it builds upon technologies the company has demonstrated recently, taking them a step further to make the road safer for those riding on two wheels. The system uses a combination of colors, sounds and vibrations to alert the driver of a potential hazard that might have otherwise gone unnoticed. Demonstrated on an XJ sedan, the system identifies nearby two-wheeled vehicles as pedal-powered or motorized, and alerts the driver accordingly. If a cycle is passing a the vehicle's blind spot, the top of the seat will vibrate to virtually "tap" the driver on the left or right shoulder, prompting him or her to look over that shoulder for the hazard. LEDs inside the cabin will then illuminate amber to red in the direction that the bike is passing. The system will even chime a bicycle bell or motorcycle horn as the two-wheeled vehicle approaches, and vibrate or stiffen the accelerator pedal if the driver keeps moving towards the obstacle. And if an occupant of the parked vehicle starts to open the door into the path of moving vehicle, it'll flash a light, sound an alarm and even vibrate the door handle to warn the occupant of the oncoming hazard. We could imagine the alerts getting a little distracting, but JLR says the system is designed to prioritize potential hazards when their are groups of pedestrians, bicyclists and/or motorcycle riders on a busy urban street. This is, of course, just the latest in a long string of new systems JLR has under development, following such technologies as the Transparent Bonnet, the Smart Assistant, the Virtual Windscreen for track sessions and the 360 Virtual Urban Windscreen for city driving. This content is hosted by a third party. To view it, please update your privacy preferences. Manage Settings.
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.