采用双输出SEPIC变换器的SPV阵列馈电SRM驱动水泵系统

Bhim Singh, A. Mishra
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引用次数: 2

摘要

本文将单开关、单输入、双输出的SEPIC(单端初级电感变换器)拓扑结构应用于基于开关磁阻电机(SRM)的SPV(太阳能光伏)水泵系统。所提出的DC-DC变换器具有传统SEPIC的优点,包括能够为SRM中点变换器的直流链路电容器提供有效的电压平衡。因此,它消除了在直流链路电容器之间平衡直流链路电压的额外努力,并使所提出的水泵系统成本有效且简单。采用了一种独特的SRM驱动器可变直流链路操作方法,采用了中点变换器开关的电子换向,消除了电机侧的电流传感器,从而降低了系统的成本和损耗。双输出SEPIC的特点是提供无极性反转的双输出电压,具有最小的有源元件和低噪声运行等特点,使所提出的双输出SEPIC适用于使用SRM驱动的太阳能水泵。为了提高泵送系统的效率,采用基于增量电导(InC)的MPPT技术馈送SRM驱动器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SPV array fed SRM driven water pumping system utilizing dual output SEPIC converter
In this paper, the topology of a single switch, single input and dual output SEPIC (Single Ended Primary Inductance Converter) is utilized for proposed SPV (Solar Photovoltaic) based water pumping system employing SRM (Switched Reluctance Motor). The proposed DC-DC converter has advantages of conventional SEPIC including capability to provide the efficient voltage balancing of DC link capacitors of a mid-point converter of SRM. Therefore, it eliminates the need of extra efforts to balance the DC link voltage across DC link capacitors and makes the proposed water pumping system cost effective and simple. A unique approach of variable DC link operation of SRM drive with an electronic commutation for switches of a mid-point converter is used with the elimination of current sensors at motor side which results in reduction in cost and losses of the system. The characteristic of providing dual output voltages with no polarity reversal and having features like minimal active components and low noise operation makes proposed dual output SEPIC suitable for solar water pumping using SRM drive. For increasing the efficiency of pumping system, an incremental conductance (InC) based MPPT technique is used to feed a SRM drive.
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