论文标题
雷达目标模拟中的二维任意到达角度
Two-Dimensional Arbitrary Angle of Arrival in Radar Target Simulation
论文作者
论文摘要
汽车雷达传感器在高级驾驶员辅助系统(ADA)的当前开发中起关键作用。即使在不利的天气条件下,它们也可以检测物体的能力,这对于自动驾驶汽车的环境密度任务来说是必不可少的。由于操作失败给人类生命带来了潜在的风险,因此必须进行彻底和实际的验证测试,需要进行集成测试解决方案。雷达目标模拟器(RTS)能够通过生成通过测试的雷达(RUT)视为目标的虚拟雷达回波来执行空中验证测试。由于这些目标的真实性和信誉是基于创建它们的准确性,因此其模拟位置必须任意调节。在这项工作中,现有的方法以任意到达角度(AOA)合成虚拟雷达目标,以覆盖方位角和高程域。该概念基于来自四个相邻RTS通道的返回信号的叠加。描述了基本原理及其约束的理论模型。此外,进行了一项测量运动,以验证拟议方法的实际功能。
Automotive radar sensors play a key role in the current development of advanced driver assistance systems (ADAS). Their ability to detect objects even under adverse weather conditions makes them indispensable for environment-sensing tasks in autonomous vehicles. Since an operational failure presents a potential risk to human life, thorough and practical validation testing must be performed, requiring an integrative test solution. Radar target simulators (RTS) are capable of performing over-the-air validation tests by generating virtual radar echoes that are perceived as targets by the radar under test (RuT). Since the authenticity and credibility of these targets is based on the accuracy with which they are created, their simulated position must be arbitrarily adjustable. In this work, an existing approach to synthesize virtual radar targets at an arbitrary angle of arrival (AoA) is extended to cover both, the azimuth and elevation domain. The concept is based on the superposition of the returning signals from four neighboring RTS channels. A theoretical model describing the basic principle and its constraints is developed. In addition, a measurement campaign is conducted to verify the practical functionality of the proposed approach.