Comparative analysis of ANN and SSM controllers in a ZVCS-Full Bridge Series-Parallel Resonant DC-DC converter

Z. Malekjamshidi, M. Jafari
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Abstract

In this paper, two methods of control for high-voltage Full Bridge Series-Parallel Resonant (FBSPR) DC-DC converter are proposed and the results are compared. Soft switching operation using Zero Current Switching (ZCS) and Zero Voltage Switching (ZVS) technologies is employed to decrease the losses and optimize the efficiency of converter. The way of obtaining small-signal model of FBSPR converter using the generalized averaging method is discussed. Then two control methods using Artificial Neural Networks (ANN) and Sequential State Machine (SSM) are explained and the experimental results are compared. Comparison between experimental results for both ANN and SSM controllers show better speed performances for SSM controller in small changes in load and more reliability for ANN controller in case of large variations.
zvcs -全桥串并联谐振DC-DC变换器中ANN和SSM控制器的比较分析
本文提出了高压全桥串并联谐振(FBSPR) DC-DC变换器的两种控制方法,并对控制结果进行了比较。采用零电流开关(ZCS)和零电压开关(ZVS)技术进行软开关操作,降低损耗,优化变换器效率。讨论了用广义平均法获得FBSPR变换器小信号模型的方法。然后介绍了人工神经网络(ANN)和顺序状态机(SSM)两种控制方法,并对实验结果进行了比较。通过对人工神经网络和人工神经网络控制器的实验结果比较,可以看出,在负荷变化较小的情况下,人工神经网络控制器的速度性能更好,而在负荷变化较大的情况下,人工神经网络控制器的可靠性更高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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