Skip to main content

Land Rover demonstrates remote-control Range Rover Sport

Jaguar Land Rover, part of the UK Autodrive consortium, has demonstrated a remote control Range Rover Sport research vehicle, showing how a driver could drive the vehicle from outside the car via their smartphone. The smartphone app includes control of steering, accelerator and brakes as well as changing from high and low range. This would allow the driver to walk alongside the car, at a maximum speed of 4mph, to manoeuvre their car out of challenging situations safely, or even to negotiate difficult off
June 18, 2015 Read time: 4 mins
7998 Jaguar Land Rover, part of the UK Autodrive consortium, has demonstrated a remote control Range Rover Sport research vehicle, showing how a driver could drive the vehicle from outside the car via their smartphone.

The smartphone app includes control of steering, accelerator and brakes as well as changing from high and low range. This would allow the driver to walk alongside the car, at a maximum speed of 4mph, to manoeuvre their car out of challenging situations safely, or even to negotiate difficult off-road terrain.

The driver could use the smartphone to reverse the car out of a parking space if someone has parked too close for them to open the door, or become his own off-road spotter, to guide the car over off-road obstacles from outside the vehicle.

By walking alongside the car, the driver could continually check ramp, approach and departure angles and allow precise positioning of the vehicle when rock crawling. It could also be an invaluable aid when the vehicle is fording a stream or traversing sections made slippery by mud or snow. The remote control function will only operate if the user is within 10 metres of the car and if the smart key can be detected. The system will stop the vehicle if the driver moves out of range or gets too close.

Future possibilities for this technology could include more autonomous functionality where the driver gives a simple command from the handset to traverse an obstacle or exit a parking space, and the car does the rest.

Jaguar Land Rover's multi-point turn Range Rover Sport is capable of autonomously manoeuvring through 180 degrees to turn the car in the road and point the car in the opposite direction. This autonomous vehicle could extricate itself from the most difficult situations, such as a dead-end roads or congested car parks, as well as performing many drivers' least favourite manoeuvre - the three-point turn in a busy street or car park.

The system uses sensors to assess available space and to avoid pedestrians, vehicles and other objects. The system takes over gear selection, steering, braking and acceleration to make as many forward and backwards movements as necessary to achieve the manoeuvre.

The research team is working on a system to scan the environment around the car and inform the driver whether it is safe to perform the turning manoeuvre. The driver then confirms the manoeuvre and the car would move forward until its path is blocked. It then selects reverse and uses the steering, throttle and brakes to do the same again. It repeats this as many times as required until it is facing in the opposite direction.

Dr Wolfgang Epple, director of Research and Technology, Jaguar Land Rover, said: "Getting a car out of a tricky parking manoeuvre can be a stressful experience for any driver. A remote control car, or a vehicle that can autonomously turn in the road, demonstrates how we could use these new technologies to reduce the tedious parts of driving and improve road safety.

"Research into technologies like these won't only help us deliver an autonomous car. They will help make real driving safer and more enjoyable. The same sensors and systems that will help an autonomous car make the right decisions, will assist the driver and enhance the experience to help prevent accidents. Autonomous car technologies will not take away the fun of driving."

Jaguar Land Rover's vision is to offer a choice of an engaged or autonomous drive. This means the car will be able to drive autonomously if the driver chooses, or offer systems that can be adjusted for a more engaging and involved drive.

The company is also working on an array of new sensors that would enable a car to operate in any environment, on rough tracks and unpaved roads as well as city streets, without any outside intervention or input from lane markings or roadside infrastructure like traffic lights.

Jaguar Land Rover has an advanced research programme underway to enhance the car's sensing capability. This project is developing a range of sophisticated sensors to make autonomous cars viable in a range of driving environments and weather conditions.

Creating a car capable of functioning autonomously in all situations requires a fusion of sensors with different attributes including radar, LIDAR, cameras, ultrasonics and structured light technology, all needed to enable an autonomous car to function in the real world and to ensure the car can make safe and accurate decisions anywhere.

For more information on companies in this article

Related Content

  • Self-driving cars ‘a US$87 billion opportunity in 2030’
    May 22, 2014
    The latest research from Lux Research indicates that automakers and technology developers are closer than ever to bringing self-driving cars to market, with basic Level 2 autonomous behaviour already coming to market, in the form of relatively modest self-driving features like adaptive cruise control, lane departure warning, and collision avoidance braking. With these initial steps, automakers are already on the road to some level of autonomy, but costs remain high in many cases. It is the higher levels
  • TRL to contribute to new autonomous vehicle research programme
    October 23, 2015
    The UK’s Transport Research Laboratory (TRL) the, has announced it is part of a new US$17 million five-year research programme to develop fully autonomous cars. The programme, jointly funded by Jaguar Land Rover and the Engineering and Physical Sciences Research Council (EPSRC), will look at some key technologies and questions that need to be addressed before driverless cars can be allowed on the roads without jeopardising the safety of other road users, including cyclists and pedestrians. TRL is the on
  • One eye on the future
    December 12, 2013
    Mobileye’s Itay Gat discusses the evolution of monocular solutions for assisted and autonomous driving with Jason Barnes. Founded in 1999, Israeli company Mobileye manufactures and supplies advanced driver assistance systems (ADAS) based on its EyeQ family of systems-on-chips for image processing for solutions such as lane sensing, traffic sign recognition, vehicle and pedestrian detection. Its products are used by both the OEM and aftermarket sectors. The company’s visual interpretation algorithms drive
  • Foundation funds research for informed campaigning
    April 29, 2015
    ITS International talks to Professor Stephen Glaister, director of the transport research and lobbying organisation, the RAC Foundation. It is through the eyes of an economist that Professor Stephen Glaister, emeritus professor of transport and infrastructure at Imperial College London and director of the RAC Foundation, views current and future transport problems. Having spent 30 years at the London School of Economics and another 10 at Imperial, the move to the RAC Foundation was a radical departure from