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High Gain Single Ended Primary Inductor Converter With Ripple Free Input Current for Solar Powered Water Pumping System Utilizing Cost-Effective Maximum Power Point Tracking Technique

机译:具有成本有效的最大功率点跟踪技术的太阳能水泵系统具有无纹波输入电流的高增益单端初级电感转换器

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This paper presents a new configuration of high gain (HG) single ended primary inductor converter (SEPIC) with a ripple-free input current to maximize the efficiency of the PV panel for standalone water pumping system (WPS). The ripple eliminating circuit combined with the HG SEPIC converter to achieve reduced ripples in photovoltaic (PV) current is independent to the duty cycle control and hence, it can be easily integrated to the main power circuit of configuration. This circuit does not need any active switches, control, or drive circuit for its execution. The ripple eliminating circuit yields a complete removal of the electrolytic capacitor connected across the PV array and significantly reduces the inductance of the HG SEPIC converter. It also improves the response and power density of the dc-dc converter. The large gain of dc-dc converter enables the use of low-voltage PV panel and minimizes the partial shading and parasitic capacitance effects on PV array source. Due to the substantial compatibility between natural characteristics of switched reluctance motor (SRM) drive and WPS, a four-phase SRM drive is utilized in the proposed scheme. In addition, a single current sensor based maximum power point tracking technique is utilized in the proposed system, which helps to reduce the cost and improve the accuracy of the overall system. Analytical, simulated, and experimental results of the developed system are presented to demonstrate the performance of the system.
机译:本文介绍了一种具有无纹波输入电流的高增益(HG)单端初级电感转换器(SEPIC)的新配置,以最大限度地提高独立水泵系统(WPS)的光伏面板的效率。与HG SEPIC转换器结合使用以消除光伏(PV)电流纹波的纹波消除电路与占空比控制无关,因此可以轻松地集成到配置的主电源电路中。该电路不需要任何有源开关,控制或驱动电路即可执行。消除纹波电路可完全去除连接在PV阵列两端的电解电容器,并显着降低HG SEPIC转换器的电感。它还可以改善DC-DC转换器的响应和功率密度。 DC-DC转换器的大增益使低压光伏面板的使用成为可能,并最大限度地减小了对PV阵列源的部分阴影和寄生电容的影响。由于开关磁阻电机(SRM)驱动器和WPS的自然特性之间具有实质性的兼容性,因此在所提出的方案中采用了四相SRM驱动器。另外,在提出的系统中利用了基于单个电流传感器的最大功率点跟踪技术,这有助于降低成本并提高整个系统的精度。给出了所开发系统的分析,模拟和实验结果,以证明该系统的性能。

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