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Making real-time hardware-in-the-loop testing of automotive electronic control units wireless

机译:使汽车电子控制单元的实时硬件在环测试成为无线

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Hardware-in-the-loop (HIL) simulation is an industry standard for testing automotive electronic control units (ECUs). In this paper, we present a concept that replaces the common wired cabling between a HIL test system and an automotive ECU and thus makes the real-time transmission of time-critical control, diagnostics, and calibration (CoDiCa) data wireless. This increases the flexibility of the HIL test setup and opens up new possibilities for testing automotive ECUs or autonomous driving systems. The proposed wireless communication gateway system adopts the robust physical layer IEEE 802.11p and is designed for operation in the 2.4 GHz industrial, scientific, and medical frequency (ISM) frequency band. To achieve compliance with the European regulations on spectrum access in this unlicensed band and to enable the bidirectional deterministic transfer of CoDiCa data, a new adaptive spectrum access procedure and time-slotted communication scheme is introduced. Based on extensive link-level simulations it is demonstrated that the introduced approach is able to meet the required real-time performance and hence is suitable to be applied for novel HIL test applications.
机译:硬件在环(HIL)仿真是用于测试汽车电子控制单元(ECU)的行业标准。在本文中,我们提出了一种概念,该概念取代了HIL测试系统与汽车ECU之间的通用有线电缆,从而使对时间至关重要的控制,诊断和校准(CoDiCa)数据的实时传输成为无线。这增加了HIL测试设置的灵活性,并为测试汽车ECU或自动驾驶系统开辟了新的可能性。拟议的无线通信网关系统采用健壮的物理层IEEE 802.11p,并设计用于在2.4 GHz工业,科学和医疗频率(ISM)频带中运行。为了在该免许可频段上达到欧洲有关频谱访问的法规并实现CoDiCa数据的双向确定性传输,引入了一种新的自适应频谱访问过程和时隙通信方案。基于广泛的链路级仿真,证明了所介绍的方法能够满足所需的实时性能,因此适合用于新颖的HIL测试应用。

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