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On formal verification of Toyota's electronic throttle controller

机译:关于丰田电子节气门控制器的正式验证

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This practice paper examines Toyota's electronic throttle controller (ETC) problem. ETC for passenger cars is a safety-critical, embedded control system and it must meet very high reliability and safety requirements. ETC systems continue to increase in complexity, making formal specification and verification processes an essential component of the development of safer systems. There are two ways to represent the real-time system. Firstly, we can describe the system's structure and function by detailing its electrical, mechanical, and other components. Secondly, the real-time system's behavior as it responds to actions and events can be described. Then we can compare the system's specification to the safety assertion to show that the system meets the safety properties. This paper describes two research threads. In the first, we present the specification of Toyota's electronic throttle control (ETC) system including the timing constraints. The second thread, which will be explored in a longer version of this paper, evaluates the use of conventional design versus electronic engine control by applying classical control theory.1
机译:本实践文件研究了丰田的电子节气门控制器(ETC)问题。乘用车的ETC是安全性至关重要的嵌入式控制系统,它必须满足非常高的可靠性和安全性要求。 ETC系统的复杂性不断增加,使得正式的规范和验证过程成为开发更安全的系统的重要组成部分。有两种表示实时系统的方法。首先,我们可以通过详细介绍系统的电气,机械和其他组件来描述系统的结构和功能。其次,可以描述实时系统响应动作和事件的行为。然后,我们可以将系统的规格与安全性声明进行比较,以表明系统满足安全性要求。本文介绍了两个研究线程。在第一篇中,我们介绍了丰田电子节气门控制(ETC)系统的规范,其中包括时间限制。第二个线程将通过应用经典控制理论来评估常规设计与电子发动机控制的结合使用。本文将在本文的较长版本中进行探讨。 1

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