PMSG风力机三电平DC-DC变换器(TLDDC)双PI控制器的设计与实现

Satrio Fitrianto, L. Pratomo
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引用次数: 0

摘要

针对风力发电机对直流电的需求日益增加的情况,提出了一种新的变换器策略,将永磁同步发电机的三相交流电能转换为功率更稳定的直流电。选择三电平DC - DC变换器(TLDDC)是因为与传统变换器相比,它可以转换更高的直流电压和电流。问题的出现是因为TLDDC在开环系统中用于转换风力涡轮机PMSG的输出功率。问题是变流器不能根据负载要求调节电压和电流。因此,开环系统必须转换为闭环,通常只使用单一控制。单一的控制是无效的,因为它只能控制电压或电流。这个控制器不能同时控制电压和电流。当负载发生变化时,输出电压或电流也会发生变化。针对这些问题,本研究提出了一种新的策略双控制系统,利用PI双控制策略对电压和电流进行控制。基于仿真和硬件实现,对该双PI控制性能进行了测试和测量,取得了良好的效果。研究结果表明,在风电机组PMSG转速不断变化的情况下,可根据负载要求获得稳定的48伏直流电压和稳定的TLDDC输出电流,输出信号为纯直流,纹波较小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Implementation of Double PI Controller in Three Level DC-DC Converter (TLDDC) for PMSG Wind Turbine
This paper discusses a converter with a new strategy as a solution for converting 3-phase AC electrical energy from a wind turbine permanent magnet synchronous generator (PMSG) into DC electricity with more stable power due to the increasing demand for DC electrical energy. Three level dc-dc converter (TLDDC) was chosen because it can convert higher DC voltage and current compared to conventional converters. The problem arises because the TLDDC is operated to convert the power output of the wind turbine PMSG in an open loop system. The problem is that the converter cannot adjust the voltage and current according to the load requirements. Therefore, open-loop systems must be converted to closed-loop and usually use only single control. A single control is ineffective because it can only control voltage or current. This control cannot control voltage and current simultaneously. When the load is changed, the output voltage or current changes. From these problems, this study proposes a new strategy double control system that utilizes the PI dual control strategy for voltage and current. Based on the simulation and hardware implementation, this double PI control performance has been tested and measured with good results. The results of this study indicate a stable voltage at 48 Volt DC and a stable TLDDC output current according to load requirements with a pure DC output signal and lower ripple even though the speed of the wind turbine PMSG is always changing.
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