Lee Sanghoon, Lee Dongkyu, Choi Pyung, Park Daejin
Carnavicom Co., Ltd., Incheon 21984, Korea.
School of Electronic and Electrical Engineering, Kyungpook National University, Daegu 41566, Korea.
Sensors (Basel). 2020 Oct 7;20(19):5706. doi: 10.3390/s20195706.
Light detection and ranging (LiDAR) sensors help autonomous vehicles detect the surrounding environment and the exact distance to an object's position. Conventional LiDAR sensors require a certain amount of power consumption because they detect objects by transmitting lasers at a regular interval according to a horizontal angular resolution (HAR). However, because the LiDAR sensors, which continuously consume power inefficiently, have a fatal effect on autonomous and electric vehicles using battery power, power consumption efficiency needs to be improved. In this paper, we propose algorithms to improve the inefficient power consumption of conventional LiDAR sensors, and efficiently reduce power consumption in two ways: (a) controlling the HAR to vary the laser transmission period (TP) of a laser diode (LD) depending on the vehicle's speed and (b) reducing the static power consumption using a sleep mode, depending on the surrounding environment. The proposed LiDAR sensor with the HAR control algorithm reduces the power consumption of the LD by 6.92% to 32.43% depending on the vehicle's speed, compared to the maximum number of laser transmissions (Nx.max). The sleep mode with a surrounding environment-sensing algorithm reduces the power consumption by 61.09%. The algorithm of the proposed LiDAR sensor was tested on a commercial processor chip, and the integrated processor was designed as an IC using the Global Foundries 55 nm CMOS process.
激光探测与测距(LiDAR)传感器有助于自动驾驶车辆检测周围环境以及到物体位置的精确距离。传统的LiDAR传感器需要一定的功耗,因为它们根据水平角分辨率(HAR)以固定间隔发射激光来检测物体。然而,由于LiDAR传感器持续低效地消耗电力,这对使用电池供电的自动驾驶和电动汽车有致命影响,因此需要提高功耗效率。在本文中,我们提出了一些算法来改善传统LiDAR传感器的低效功耗,并通过两种方式有效降低功耗:(a)根据车辆速度控制HAR以改变激光二极管(LD)的激光发射周期(TP),以及(b)根据周围环境使用睡眠模式降低静态功耗。与最大激光发射次数(Nx.max)相比,所提出的具有HAR控制算法的LiDAR传感器根据车辆速度可将LD的功耗降低6.92%至32.43%。具有周围环境传感算法的睡眠模式可将功耗降低61.09%。所提出的LiDAR传感器的算法在商用处理器芯片上进行了测试,并使用Global Foundries 55 nm CMOS工艺将集成处理器设计为集成电路。