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Instrumentation and Processor in Loop Verification for Dynamic Skip Fire Technology

机译:动态跳过防火技术环路验证中的仪器处理器

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Amid various cylinder deactivation technologies in automobile engines which provide better fuel efficiency, Dynamic Skip Fire (DSF) has proved to be promising. In DSF, a firing decision is made before every cylinder firing opportunity based on the engine torque requested. Providing this technology to automakers in form of a software object integratable with the customer’s engine controller is done by careful specification of interfaces and execution context definitions. The timing and performance of the software objects integrated with controller firmware can be dependent on the platform and compiler development environment used by the customer. This paper discusses the development of a code test environment for producing high-confidence verification. To do so an industry-accepted verification tool suite is used. Execution timing data of various functions of the source code is analyzed in detail, as well as input-output correctness. Critical software issues are readily identified before delivery to the customer. A method for determining the computational time required for the software modules is shown, and advantages of this method are discussed. Further advantages of this procedure for testing and calibration are described.
机译:在汽车发动机中的各种气缸停用技术中,提供了更好的燃料效率,动态跳过火(DSF)已被证明是有前途的。在DSF中,在基于所请求的发动机扭矩的每个汽缸射击机会之前进行射击决定。为以与客户发动机控制器的软件对象的形式提供此技术,通过仔细规范接口和执行上下文定义来完成。与控制器固件集成的软件对象的时序和性能可以取决于客户使用的平台和编译器开发环境。本文讨论了开发代码测试环境,以产生高置信度验证。为此,使用行业接受的验证工具套件。详细分析源代码的各种功能的执行时序数据,以及输入输出正确性。在向客户交付之前容易发现关键软件问题。示出了用于确定软件模块所需的计算时间的方法,并讨论了该方法的优点。描述了该方法进行测试和校准的进一步优点。

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