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Efficient solar-powered water pump with single-input dual-output DC–DC converter employing four-phase SRM drive

机译:高效的太阳能水泵采用采用四相SRM驱动器的单输入双输出DC-DC转换器

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摘要

The present work deals with the design of an efficient and inexpensive autonomous photovoltaic array-based water pumping system utilising a new configuration of a single-input balanced dual supply buck–boost DC–DC converter. A four-phase switched reluctance motor (SRM) drive is selected to pump the water effectively and to make the system reliable. The utilised DC–DC converter can provide two balanced outputs using a single solar power source. It offers continuous output supply with minimum ripple to the SRM pump. The new control logic is also discussed in this work to provide equal voltages for two capacitors of the split converter in both starting and steady-state conditions. An improved perturb and observer-based maximum power point tracking control is also utilised to enhance the solar output power at varying irradiance. Moreover, owing to the pulse-width modulation switching of a split converter, a reduction is achieved in the size of split DC-link capacitors. The MATLAB/Simulink-based simulation is done to validate the real-time implementation of a developed system. These obtained responses are again validated through test results obtained via the developed prototype.
机译:本工作涉及利用单输入平衡双电源降压-Boost DC-DC转换器的新配置的高效廉价的自动光伏阵列水泵系统的设计。选择四相开关磁阻电机(SRM)驱动器以有效地泵送水,并使系统可靠。利用的DC-DC转换器可以使用单个太阳能电源提供两个平衡输出。它为SRM泵提供了最小纹波的连续输出电源。在这项工作中还讨论了新的控制逻辑,为在起始和稳态条件下,为分流转换器的两个电容器提供相同的电压。还利用改进的扰动和基于观察者的最大功率点跟踪控制来增强太阳能输出功率,以变化的辐照度。此外,由于分流转换器的脉冲宽度调制切换,在分离直流链路电容器的尺寸下实现了减小。基于MATLAB / SIMULINK的仿真完成以验证开发系统的实时实现。通过通过开发的原型获得的测试结果再次验证这些所得响应。

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