Примери за използване на Lidar technology на Английски и техните преводи на Български
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Meeting The LiDAR Technology.
So now we're starting to fill in the gaps using this LIDAR technology.”.
What is this LiDAR technology?
What is Lidar technology and its principle of operation?
A lost ancient city has been discovered using LIDAR Technology, in South Africa.
Mussel used the Lidar technology, which his rivals also rely on.
When it comes to building of an overhead infrastructure, such as a road or a railway line,can be used the LiDAR technology.
Scientists made the discovery using Lidar technology, which is short for‘light detection and ranging.'.
Lidar technology, which uses light-based sensor to generate a three-dimensional view street, remains a relatively young technology that is still in flux.
The new technology is also able to detect objects at a range of up to 250 meters,a much further range than any LiDAR technology currently available.
Lidar technology, which uses light-based sensors to generate a 3-dimensional view of the road, remains a relatively young technology that is still in flux.
It published an online research paper describing how neural networks can be used to help improve accuracy in Lidar technology, often used in autonomous vehicles.
LiDAR technology, which uses pulsed laser signals to detect objects, is a crucial element in creating safe autonomous cars.
The Ocean Cleanup Aerial Expedition used a customised C- 130 Hercules aircraft andtrained observers equipped with a variety of lidar technology based scanning equipment for their search.
The spokesman said the Lidar technology Mr. Levandowski is alleged to have stolen doesn't relate in any way to Pronto's own technology. .
Apple reignited rumors by publishing an online research paper describing how neural networks can be used to help improve accuracy in Lidar technology, often used in autonomous vehicles.
Volvo Cars stated that the LiDAR technology can help to make its autonomous travel vision, as showcased in the Volvo 360c concept earlier this year, a reality.
During this year's LA Auto Show, Volvo andLuminar demonstrated how advanced their LiDAR technology is, as it can even detect human poses, including individual limbs, at distances of up to 250 meters(820 feet).
LiDAR technology was developed in the 1960's to analyze oceans and ice in the Arctic, but has been employed since in topography, geology and mapping around the world.
Although the press has devoted great attention to the"lidar" technology(which works like radar, but use a laser light) at the heart of self-driving vehicles are cameras, as they can detect road marks, signs and traffic lights.
Ouster is a lidar technology company based in San Francisco, it builds high-resolution 3D lidar sensors for use in autonomous vehicles, robotics, drones, mapping, mining, defense and more.[ 3][ 4][ 5][ 6] Its sensors produce camera-like images from ambient infrared, with software-focused mapping that reduces the need for high precision GPS systems, wheel odometry or gyroscopes.
The ongoing development of Lidar technology, which uses pulsed laser signals to detect objects, is a crucial element in creating safe autonomous cars.
The development of LiDAR technology that make use of pulsed laser signals to detect objects is a key feature for the creating of safe autonomous cars.
The development of advanced LiDAR technology and perception capabilities is one of many ways in which Volvo Cars and its partners work towards a safe introduction of fully autonomous cars.
Particularly key to Otto's technology is a lidar system, which uses a pulsed laser to amass detailed data about the truck's surroundings.
Technology such as LiDAR can help cars to reach the vision for autonomous travel, as showcased in the Volvo 360c Concept earlier this year, a reality.
They may use sonar technology alongside lidar to create 3D face maps in any environment, and they may find ways to process face data(and identify strangers) in an incredibly short amount of time.
The IceBridge team observed the rift running across the ice shelf for about 18 miles(29 km), using an instrument called the Airborne Topographic Mapper,which uses a technology called lidar(light detection and ranging) that sends out a laser beam that bounces off a surface and back to the device.