首页> 外文会议>International Conference on Control, Automation and Systems >A Study on Applicable Control Methods of Electric Power Steering System in Dynamic Redundancy Environments
【24h】

A Study on Applicable Control Methods of Electric Power Steering System in Dynamic Redundancy Environments

机译:动态冗余环境下电动助力转向系统的适用控制方法研究

获取原文

摘要

The reliability is defined as a probability that a system will perform properly for a specified period of time without any failures, and it is considered as one of the important design attributes. In automotive industry, safety-critical systems such as the electrical power steering (EPS) are considering dynamic redundant systems, which are configured two identical controllers, to ensure the higher functionality, reliability and distributed intelligence which can recover from failures. Two identically configured controllers (one active, one backup) should swap roles within the deadline in the redundancy scheme when a system failure is detected in active controller. A challenge of dynamic redundant systems is to determine a precise role as the active controller to operate a system, error detection of the active controller and how to take over to a backup controller in the defined time. Moreover, a role of each controller has to be independently protected to ensure mutual exclusion under safety requirements. This paper studies dynamic redundant architectures and arbitration control methods that can provide full fault-tolerance without any deviation of functionality even in the presence of faults. The system performance of the dynamic redundant architecture is evaluated experimentally by actual test scenarios to show the practical implication of our architecture.
机译:可靠性被定义为系统在指定时间段内正常运行而没有任何故障的概率,并且被认为是重要的设计属性之一。在汽车工业中,诸如电动助力转向(EPS)之类的安全关键系统正在考虑动态冗余系统,该系统配置有两个相同的控制器,以确保可以从故障中恢复的更高功能,可靠性和分布式智能。当在活动控制器中检测到系统故障时,两个冗余配置的控制器(一个活动,一个备份)应在冗余方案的期限内交换角色。动态冗余系统的挑战是确定精确的角色,作为操作系统的活动控制器,活动控制器的错误检测以及如何在定义的时间内接管备用控制器。此外,必须独立保护每个控制器的角色,以确保在安全要求下相互排斥。本文研究了动态冗余体系结构和仲裁控制方法,即使在存在故障的情况下,这些冗余结构和仲裁控制方法也可以提供完全的容错能力,而不会出现功能偏差。通过实际测试场景对动态冗余体系结构的系统性能进行了实验评估,以显示我们体系结构的实际含义。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号