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Suppression of Chattering in the Real-Time Simulation of the Power Converter

机译:抑制电力转换器的实时仿真中的抖动

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摘要

The achievement of the time-step below 500-ns in the field-programmable-gate-arrays (FPGAs)-based real-time simulation is of importance for the power converters having high switching frequencies. However, most of the existing focus on addressing the power converter modeling under the continuous conduction mode (CCM). Nevertheless, toward practical applications, the modeling of discontinuous conduction mode (DCM) with a light-load is of a greater challenge due to the "chattering" around zero point. In order to solve the chattering problem under the light-load, this article proposes a zero-regulation (ZR) method for FPGA-based real-time simulation. The proposed ZR method can not only represent CCM and DCM with a unified formula but also solve the chattering problem and improve accuracy and stability. In addition, results using different switch models are also given to demonstrate the feasibility and the generality of the proposed method. Finally, a case study of the series load resonant converter is presented. Simulation results are validated against a reference model at a 100-ns time step and a 10-kHz switching frequency.
机译:基于现场可编程门阵列(FPGA)的实际时间仿真中的500-ns的时间步骤的实现对具有高开关频率的功率转换器非常重要。但是,大多数现有的专注于在连续导通模式(CCM)下寻址功率转换器建模。然而,对于实际应用,由于零点周围的“抖动”,不连续传导模式(DCM)的建模是更大的挑战。为了解决轻负载下的抖动问题,本文提出了一种用于基于FPGA的实时仿真的零调节(ZR)方法。所提出的Zr方法不仅可以用统一的公式代表CCM和DCM,而且还可以解决抖动问题并提高精度和稳定性。另外,还提供了使用不同开关模型的结果来证明所提出的方法的可行性和一般性。最后,提出了对串联载荷谐振转换器的案例研究。仿真结果在100NS时间步骤和10kHz开关频率下对参考模型进行验证。

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