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Non-standard CAN Network Topologies Verification at High Speed Transmission Rate using VHDL-AMS

机译:非标准可以使用VHDL-AMS以高速传输速率进行网络拓扑验证

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This paper considers the verification of non-standard CANnetwork topologies of the physical layer at high speedtransmission rate (500.0Kbps and 1.0Mbps). These networktopologies including single star, multiple stars, and hybridtopologies (multiple stars in combination with linear bus orwith ring topology) are simulated by using behavior modelinglanguage (VHDL-AMS) in comparison to measurement.Throughout the verification process, CAN transceiverbehavioral model together with other CAN physical layersimulation components have been proved to be very accurate.The modeling of measurement environment of the CANnetwork is discussed, showing how to get the measurementand simulation results well matched. This demonstrates thatthe simulation solution is reliable, which is highly desired andvery important for the verification requirement in CANphysical layer design. Last but not least, with the developedCAN measurement system, application layer is also provedworking properly when implementing different non-standardtopologies at high speed transmission rate.
机译:本文考虑了在高速转移率(500.0kbps和1.0Mbps)的物理层的非标准插装拓扑的验证。这些Networktopologies包括单星,多颗星和杂交术(多颗星与线性总线或环形拓扑组合的恒星)进行模拟,与测量相比,使用行为型号(VHDL-AMS)进行模拟.Througout验证过程,可以与其他一起收发到其他物理分层组件可以被证明是非常准确的。讨论了装箱的测量环境建模,展示了如何获得测量和仿真结果良好匹配。这表明模拟解决方案是可靠的,这对于Cophysical层设计中的验证要求非常重要。最后但并非最不重要的是,在高速传输速率下在实施不同的非标opologies时,也可以正确地证明应用层。

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