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Comparative Evaluation of Switching and Average Models of a DC-DC Boost Converter for Real-Time Simulation

机译:用于实时仿真的DC-DC Boost转换器的开关模型和平均模型的比较评估

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摘要

This paper presents a comparative evaluation of the average and switching models of a dc-dc boost converter from the point of view of real-time simulation. Both the models are used to simulate the converter in real-time on a Field Programmable Gate Array (FPGA) platform. The converter is considered to function over a wide range of operating conditions, and could do transition between continuous conduction mode (CCM) and discontinuous conduction mode (DCM). While the average model is known to be computationally efficient from the perspective of off-line simulation, the same is shown here to consume more logical resources than the switching model for real-time simulation of the dc-dc converter. Further, evaluation of the boundary condition between CCM and DCM is found to be the main reason for the increased consumption of resources by the average model.
机译:本文从实时仿真的角度对DC-DC升压转换器的平均模型和开关模型进行了比较评估。这两个模型均用于在现场可编程门阵列(FPGA)平台上实时仿真转换器。该转换器被认为可以在很宽的工作条件范围内工作,并且可以在连续导通模式(CCM)和不连续导通模式(DCM)之间进行转换。虽然从离线仿真的角度来看,平均模型在计算上是有效的,但此处显示的平均模型比用于DC-DC转换器实时仿真的开关模型要消耗更多的逻辑资源。此外,通过平均模型发现,评估CCM和DCM之间的边界条件是导致资源消耗增加的主要原因。

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