首页> 外文会议>The 2011 Electronic System Level Synthesis Conference >Application-specific codesign platform generation for digital mockups in cyber-physical systems
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Application-specific codesign platform generation for digital mockups in cyber-physical systems

机译:用于网络物理系统中数字样机的专用代码签名平台生成

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The testing of cyber-physical systems requires validating device functionality for a wide range of operating conditions. The environment with which the cyber-physical device interacts, such as lungs for a medical ventilator device or a busy freeway for an autonomous vehicle, may be complex and subsequently difficult to explore all possible configurations. Computer simulations that utilize device and environment behavioral models may be used as a first stage of testing, but at some point development must occur using the real device running in real-time. We present a codesign framework for aiding cyber-physical device development where real devices or prototypes are connected to real-time models that simulate the interacting environment. Such test setups are known as digital mockups and allow for testing environment scenarios that are hard to capture with commonly-used but limited physical mockups. The framework supports model hardware/software codesign to enable models of varying speed and accuracy to be implemented within an embedded processor or as a custom coprocessor circuit on an FPGA. We describe an accompanying tool that generates code templates to reduce the time required to develop digital mockup test setups. We utilize the framework to build a digital mockup test setup for a commercial ventilator, and showcase codesign capabilities by implementing environmental models as both circuits and as instructions on a processor.
机译:网络物理系统的测试需要在广泛的工作条件下验证设备功能。网络物理设备与之交互的环境(例如医疗呼吸机设备的肺部或自动驾驶汽车的繁忙高速公路)可能很复杂,因此很难探索所有可能的配置。利用设备和环境行为模型的计算机仿真可以用作测试的第一阶段,但有时必须使用实时运行的真实设备进行开发。我们提供了一个代码签名框架,用于辅助网络物理设备的开发,其中将实际设备或原型连接到模拟交互环境的实时模型。这种测试设置被称为数字模型,并且允许测试环境场景,这些场景很难用常用但有限的物理模型捕获。该框架支持模型硬件/软件代码签名,以使各种速度和精度的模型可以在嵌入式处理器内实现,也可以作为FPGA上的定制协处理器电路实现。我们描述了一个附带的工具,该工具可以生成代码模板,以减少开发数字模型测试设置所需的时间。我们利用该框架为商用呼吸机构建数字样机测试设置,并通过将环境模型既作为电路又作为处理器上的指令来实现,展示了代码签名功能。

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