Probabilistic fault detection and handling algorithm for testing stability control systems with a drive-by-wire vehicle

Peter Bergmiller, M. Maurer, Bernd Lichte
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引用次数: 8

Abstract

This paper presents a probabilistic fault detection and handling algorithm (PFDH) for redundant and deterministic X-by-wire systems. The algorithm is specifically designed to guarantee safe operation of an experimental drive-by-wire vehicle used as test platform and development tool in research projects focusing on vehicle dynamics. The required flexibility of the overall system for use as a test bed influences significantly the redundancy structure of the onboard network. A “black box” approach to integrate newly developed user algorithms is combined with a hot-standby architecture controlled by PFDH. This way, functional redundancy for basic driving operations can be achieved despite unknown software components. PFDH is based on monitoring multiple criteria over time, including vehicle dynamics and relative error probabilities of hard- and software components provided by experts or statistical data.
线控车辆稳定性控制系统测试的概率故障检测与处理算法
提出了一种针对冗余和确定性线传系统的概率故障检测与处理算法。该算法是专门为保证线控实验车辆的安全运行而设计的,作为车辆动力学研究项目的测试平台和开发工具。作为试验台的整个系统所需的灵活性对机载网络的冗余结构有很大影响。将新开发的用户算法与由PFDH控制的热备架构相结合,采用“黑盒”方法集成。这样,即使存在未知的软件组件,也可以实现基本驾驶操作的功能冗余。PFDH基于长期监测多个标准,包括车辆动态和专家提供的硬件和软件组件的相对错误概率或统计数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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