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System architecture for installed-performance testing of automotive radars over-the-air

机译:用于汽车雷达的安装性能测试的系统架构

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Automotive radar at 77 GHz is a key technology for the implementation of autonomous driving. The sensors and the systems associated with it are traditionally tested using real test drives that span several millions of kilometres. However, these test drives do not provide a reliable, reproducible nor controlled environment. Moreover, the costs and time effort associated with them is tremendous. Hence, novel test systems are required where experiments can be performed in an accurate, reliable, reproducible, and controllable way, by emulating a representative and realistic virtual test environment. The objective of this paper is to present an architecture and approach to augment real field tests. We use a hardware-in-the-loop approach that emulates a virtual radar environment corresponding to the scenarios defined for test and validation, and simulates the response behaviour of the interconnected automotive subsystems. The whole system will be installed within the Virtual Road Simulation and Test Area at the Technische Universit?t Ilmenau. The solution comprises a holistic evaluation system where the radar-under-test is installed in the car, stimulated in a virtual electromagnetic environment, and its performance is evaluated in real time. The approach is to divide the system design problem into blocks of independent subsystems and their components. We analyse the critical parameters of each one of them, in order to arrive at a coherent system concept through interconnection of these sub-systems. We also discuss some of the initial aspects of our implementation.
机译:77 GHz的汽车雷达是实现自动驾驶的关键技术。传感器和与其相关的系统传统上使用跨越几百万公里的真实测试驱动器进行测试。但是,这些测试驱动器不提供可靠,可重复的也不控制的环境。此外,与他们相关的成本和时间努力是巨大的。因此,需要新的测试系统,其中可以通过模拟代表性和现实的虚拟测试环境来以准确,可靠,可重复的和可控的方式执行实验。本文的目的是提供一种建筑和方法来增加真实的现场测试。我们使用硬件循环方法,模拟与用于测试和验证定义的方案相对应的虚拟雷达环境,并模拟互连的汽车子系统的响应行为。整个系统将安装在Technische Universit的虚拟道路仿真和测试区内?T ilmenau。该解决方案包括整体评估系统,其中雷达次射线测试安装在汽车中,在虚拟电磁环境中刺激,其性能实时评估。该方法是将系统设计问题划分为独立子系统及其组件的块。我们分析了它们中的每一个的关键参数,以便通过这些子系统的互连到达一个相干系统概念。我们还讨论了我们实施的一些初步方面。

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