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Assessment of high-integrity embedded automotive control systems using hardware in the loop simulation

机译:在回路仿真中使用硬件评估高完整性嵌入式汽车控制系统

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Sensor-based driver assistance systems often have a safety-related role in modern automotive designs. In this paper we argue that the current generation of "Hardware in the Loop" (HIL) simulators have limitations which restrict the extent to which testing of such systems can be carried out, with the consequence that it is more difficult to make informed decisions regarding the impact of new technologies and control methods on vehicle safety and performance prior to system deployment. In order to begin to address this problem, this paper presents a novel, low-cost and flexible HIL simulator. An overview of the simulator is provided, followed by detailed descriptions of the models that are employed. The effectiveness of the simulator is then illustrated using a case study, in which we examine the performance and safety integrity of eight different designs of a representative distributed embedded control system (a throttle- and brake-by-wire system with adaptive cruise control capability). It is concluded that the proposed HIL simulator provides a highly effective and low-cost test environment for assessing and comparing new automotive control system implementations.
机译:基于传感器的驾驶员辅助系统在现代汽车设计中通常扮演着与安全相关的角色。在本文中,我们认为,当前的“硬件在环”(HIL)仿真器存在局限性,限制了对此类系统进行测试的程度,结果是,就以下方面做出明智的决定更加困难在部署系统之前,新技术和控制方法对车辆安全和性能的影响。为了解决这个问题,本文提出了一种新颖,低成本,灵活的HIL仿真器。提供了模拟器的概述,然后是所用模型的详细说明。然后,通过一个案例研究来说明模拟器的有效性,在该案例中,我们检查了代表性分布式嵌入式控制系统(具有自适应巡航控制功能的油门线控系统)的八种不同设计的性能和安全完整性。 。结论是,提出的HIL仿真器为评估和比较新的汽车控制系统实现方案提供了一种高效且低成本的测试环境。

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