9.1面向汽车环视雷达

C. Hung, A. Lin, B. Peng, Hua Wang, Jui-Lin Hsu, Yen-Ju Lu, W. Hsu, J. Zhan, B. Juan, Chi-Hang Lok, Sam Lee, P. Hsiao, Qiang Zhou, Mark Wei, H. Chu, Yu-Lun Chen, Chao-Ching Hung, K. Fong, Po-Chun Huang, Pi-Chiao Chen, Sheng-Yuan Su, Yan-Jiun Chen, Kehou Chen, C. Tung, Yibin Hsieh, Tzung-Chuen Tsai, Yi-fu Chen, W. Hsin, Liang Guo, Hanfei Liu, D. Jin
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引用次数: 17

摘要

未来的驾驶将从今天的身体移动和享受,扩展到通过无线连接、清洁和绿色技术、安全交易等提供更多服务。无论所有权是基于实体车辆还是服务,也无论司机是人类还是机器人,有一个需求永远不会改变,那就是以可承受的成本获得更好的安全性。在先进驾驶辅助系统(ADAS)可用的传感器技术中,雷达是不可或缺的,因为它具有抗环境影响、远程探测、足够的距离分辨率和同时多深度探测的独特能力。这一点至关重要,因为摄像头、激光雷达和超声波传感器在恶劣天气条件下表现不佳,而且如果没有雷达,自动驾驶汽车可能会部分失明。汽车雷达有多种应用,如负责自动巡航控制和自动紧急制动的前雷达,以及负责盲点检测(BSD)、交叉交通警报(CTA)等的拐角雷达。一种新型应用正在兴起,包括超短距离传感和360°环视,用于停车辅助、开门警报等。本文将研究新应用的要求,并进一步分为系统规格和电路规格。一个新的系统,包括应用驱动的算法,硬件和软件设计,以满足新的需求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
9.1 Toward Automotive Surround-View Radars
The future of driving extends from physical mobility and enjoyment today to having more services enabled by wireless connectivity, clean and green technologies, secure transactions, and so forth. Whether the ownership is based on physical vehicles or services, or whether the drivers are human or robots, one demand that will never change is to have better safety at affordable cost. Among available sensor technologies for the advanced-driver-assistance-system (ADAS), radar is indispensable due to its unique capability in robustness against environmental impacts, long-range detection, sufficient range resolution, and simultaneous multi-depth detection. Those are very crucial since camera, Lidar and ultrasonic sensors perform poorly under severe weather conditions, and an autonomous vehicle would become partially blinded without radars. There are several automotive radar applications such as front radars responsible for autonomous cruise control and automatic emergency braking, as well as corner radars responsible for blind-spot detection (BSD), cross-traffic alert (CTA), and the like. A new class of applications comprehending ultra-short range sensing and 360° surround view for parking assistance, door-opening alert, etc. is emerging. In this paper, requirements of the new applications will be examined, which will be further broken into system and circuit specification. A new system including application-driven algorithm, hardware and software designs will be presented to fulfill the new demands.
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