RISC-V AMS VP:一个面向信息物理系统的开源评估平台

Sallar Ahmadi-Pour, V. Herdt, R. Drechsler
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引用次数: 1

摘要

最近,在SystemC TLM(事务级建模)中实现的虚拟原型(vp)已被引入到不断发展的RISC-V生态系统中,以促进早期软件开发和测试。然而,准确的环境建模对于信息物理系统(CPS)至关重要,但在这一点上却大多被忽视了。因此,在本文中,我们提出了RISC-V AMS VP框架,该框架将现有的开源RISC-V VP与SystemC AMS(模拟/混合信号)环境建模风格相结合,以获得为CPS量身定制的RISC-V评估平台。作为一个案例研究,我们创建了一个温度控制系统,该系统集成了传感器和加热器组件以及控制软件。此外,我们还展示了一个典型的故障注入评估结果,该评估通过将软件、硬件和环境模型整合到我们统一的RISC-V AMS VP框架中来实现。最后,我们提供RISC-V AMS VP框架以及温度控制系统作为开源,以促进进一步的研究和作为教育目的的基础。
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RISC-V AMS VP: An Open Source Evaluation Platform for Cyber-Physical Systems
Recently, Virtual Prototypes (VPs) implemented in SystemC TLM (Transaction-Level Modeling) have been introduced into the growing RISC-V ecosystem to facilitate early software development and testing. However, accurate environment modeling, which is crucial for Cyber-Physical Systems (CPS), has been mostly neglected to this point. Thus, in this paper, we propose the RISC-V AMS VP framework, that combines an existing open source RISC-V VP with the SystemC AMS (Analog/Mixed Signal) environment modeling style to obtain a RISC-V evaluation platform tailored for CPS. As a case study we created a temperature control system that integrates a sensor and heater component together with a control software. Moreover, we present results on an exemplary fault-injection evaluation that is enabled by bringing together software, hardware and environment models in our unified RISC-V AMS VP framework. Finally, we provide the RISC-V AMS VP framework together with the temperature control system as open source to stimulate further research and as foundation for educational purposes.
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