并联DC-DC升压变换器改进下垂控制方法中电缆电阻的实现

Muamer M. Shebani, Tarirq Iqbal, J. Quaicoe
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引用次数: 2

摘要

针对并联DC-DC升压变换器之间的负载电流分担问题,提出了一种改进的变电缆电阻下垂法。由于并行连接的模块之间没有通信链路,因此下垂方法在系统中提供了合适的电流共享。然而,当考虑电缆电阻时,并联变流器输出电压的小失配会导致两个模块之间的循环电流和负载电流分担不均匀。为了在不使用模块间通信链路的情况下解决这一问题,提出了基于电缆电阻实现的改进下垂方法,以改善负载电流的共享。这可以通过单独调整并联变流器的每个变流器的输出电压来建立,并根据改进的下垂方法的负载调节特性。通过Matlab/Simulink仿真验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Implementation of Cable Resistance in Modified Droop Control Method for Parallel-connected DC-DC Boost Converters
For load current sharing between parallel-connected DC-DC boost converters, a modified droop method with varying cable resistance is presented in this paper. The droop method provides a suitable current sharing in the system because there is no intercommunication link between the parallel-connected modules. However, when the cable resistance is considered, a small mismatch in output voltage of parallel-connected converters leads to circulating current and unequal load current sharing between two modules. To resolve this issue without using a communication link between modules, the modified droop method based on cable resistance implementation is proposed to improve the load current sharing. This can be established by adjusting the output voltage for each converter of the parallel-connected converters individually and according to modified load regulation characteristic of the droop method. The effectiveness of the proposed method is demonstrated using Matlab/Simulink simulations.
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