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首页> 外文期刊>Journal of Turbulence >Surrogate Bicycle Design for Millimeter-Wave Automotive Radar Pre-Collision Testing
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Surrogate Bicycle Design for Millimeter-Wave Automotive Radar Pre-Collision Testing

机译:毫米波汽车雷达预碰撞测试的代理自行车设计

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摘要

This paper discusses the development of a surrogate bicycle target for evaluating the effectiveness of vehicular autonomous emergency braking (AEB)/pre-collision systems (PCSs) that uses 77-GHz radar systems in detecting bicyclists on the road. The design objective of the surrogate bicycle is to produce similar optical appearance and radar response in a 76-78 GHz band as a real bicycle selected based on its popularity (in 2014) in the United States. In addition, the surrogate bicyclist needs to be able to withstand the impact of the test vehicle traveling at 30 mph (or 48 kph) should it fail to detect the surrogate target. Our design approach differs from the only other surrogate bicyclist developed by a European research group in that our surrogate bicyclist produces similar radar response as a real bicyclist over the entire 360 degrees of azimuth angles. Our design approach began with experimental characterizing the radar cross section (RCS) patterns of real bikes of different types as well as identifying RCS contributions of different parts on a bike via accurate simulations, which were also used for design optimizations. The RCS performance of the fabricated surrogate bicycle was verified via 360 degrees azimuth pattern measurement comparison with a real bicycle. Its physical performance was tested via actual field testing on a test track with two commercial vehicles equipped with AEB and PCS systems.
机译:本文讨论了用于评估使用77-GHz雷达系统在路上检测骑自行车河的车辆自主紧急制动(AEB)/预碰撞系统(PCS)的有效性的代理自行车目标的开发。代理自行车的设计目标是在76-78GHz乐队中产生类似的光学外观和雷达响应,作为基于其受欢迎的真正自行车(2014年)在美国。此外,替代骑自行车的人需要能够承受试验车辆以30英里/小时(或48 kPH)的冲击,如果它不能检测到替代目标。我们的设计方法与欧洲研究小组开发的唯一其他替代骑自行车的人不同,因为我们的替代自行车骑士在整个360度方位角的真正骑自行车的人中产生类似的雷达响应。我们的设计方法开始于实验表征不同类型的真正自行车的雷达横截面(RCS)模式,以及通过精确的模拟识别不同部件对自行车上的RCS贡献,这也用于设计优化。通过与真正的自行车的360度方位角测量测量比较验证了制造的代理自行车的RCS性能。它的物理性能通过测试轨道上的实际现场测试进行了测试,配备了配备AEB和PCS系统的两辆商用车。

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