Parasitic Battery Drain Problems and AUTOSAR Acceptance Testing

A. Thiyagaraj
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引用次数: 1

Abstract

Battery Drain problems can occur in the vehicle due to improper network management between electronic control units (ECUs). Aim of this paper is to identify the factors that cause transmission and cease of transmission of a network management message of an ECU along with its application messages that controls the sleep/wake-up performance of other ECUs in the network. Strategy used here is, based on the root cause analysis of problems found in Display unit in vehicle environment, the functional CAN signals impacting sleep/wake-up behavior is re-mapped along with the state flow transition of AUTOSAR NM Algorithm. A re-defined test case design and simulation for vehicle model is created. Especially it focuses on validating the impact of functional CAN signals on DUT’s sleep/wake-up performance. The result includes, design and development of use case matrix(mapped with specification) to validate the impact of network management messages, its flow of transition as well as the impact of functional CAN messages on the sleep/wake-up behavior of DUT and on the system as a whole. Also a new set of system level defects identified across Audio and display units-based on the re-designed network management test procedure and simulation with Vector Canoe model (comprehensive software tool for development, test and analysis of entire ECU networks and individual ECUs.). This paper provides relevant design guidelines for acceptance testing of any communicative network that follows AUTOSAR standard and this can be deployed across programs/products. It concludes validation of network management functionality (AUTOSAR) shall not be restricted only to the transmission of network management (NM) message of an ECU, as well as shall consider application messages that triggers NM messages of other ECUs in the network. History Received: 18 Oct 2017 Accepted: 11 Mar 2018 e-Available: 18 Apr 2018
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寄生电池损耗问题和AUTOSAR验收测试
由于电子控制单元(ecu)之间的网络管理不当,车辆可能会出现电池耗尽问题。本文的目的是确定导致ECU的网络管理消息的传输和停止传输的因素,以及控制网络中其他ECU的睡眠/唤醒性能的应用消息。这里使用的策略是,基于对车载环境中显示单元问题的根本原因分析,随着AUTOSAR NM算法的状态流转换,重新映射影响睡眠/唤醒行为的功能CAN信号。重新定义了车辆模型的测试用例设计与仿真。特别着重于验证功能性CAN信号对DUT睡眠/唤醒性能的影响。结果包括设计和开发用例矩阵(与规范映射),以验证网络管理消息的影响,其转换流以及功能性CAN消息对DUT的睡眠/唤醒行为和整个系统的影响。此外,基于重新设计的网络管理测试程序和Vector Canoe模型(用于开发、测试和分析整个ECU网络和单个ECU的综合软件工具)的模拟,在音频和显示单元中发现了一组新的系统级缺陷。本文为遵循AUTOSAR标准的任何通信网络的验收测试提供了相关的设计指南,这可以跨程序/产品部署。它的结论是,网络管理功能(AUTOSAR)的验证不应仅限于ECU的网络管理(NM)消息的传输,还应考虑触发网络中其他ECU的NM消息的应用程序消息。收稿日期:2017年10月18日接收日期:2018年3月11日电子出版日期:2018年4月18日
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