基于单级太阳能光伏阵列的SRM驱动水泵系统

A. Mishra, Bhim Singh
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引用次数: 28

摘要

本文介绍了一种使用开关磁阻电机(SRM)的低成本高效单级光伏(PV)发电机供电的水泵解决方案。在增量电导(IC) MPPT(最大功率点跟踪)算法中最优选择扰动大小(ΔD)和初始占比(D),通过以降低的速率建立SRM转换器的分裂电容器上的电压,促进SRM的软启动。SRM驱动速度由光伏阵列输出最大功率点电流控制。这避免了电机侧的电流和电压传感器。所提出的单级系统在中点变换器的脉宽调制(PWM)开关下工作,有利于用小电容减少笨重的直流链路分路电容。本文还介绍了一种基于关断角的SRM驱动自启动控制算法。此外,本文还讨论了系统设计的细节,并分析了其在不同环境条件下的性能。通过MATLAB仿真和硬件样机的测试结果验证了系统的适用性。
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A single stage solar PV array based water pumping system using SRM drive
The present paper describes the solution for cost effective and efficient single stage photovoltaic (PV) generator powered water pumping using a Switched Reluctance motor (SRM). An optimal selection of a perturbation size (ΔD) and an initial duty ratio (D) in incremental conductance (IC) MPPT (Maximum Power Point Tracking) algorithm facilitate soft starting to SRM by building up the voltage across split capacitors of a SRM converter with a reduced rate. The speed of SRM drive is controlled by output maximum power point (MPP) current of PV array. This avoids the current and voltage sensors on motor side. The proposed single stage system is operated under pulse width modulation (PWM) switching of a mid-point converter and gives privileged to reduce the bulky DC link split capacitors with small capacitors. A turn- off angle dependent control algorithm to self start a proposed SRM drive is also introduced in present system. Moreover, the present paper also discussed the details of system design and analysis of its performance under varying environmental conditions. The suitability of proposed system is validated using MATLAB simulation and test results on a hardware prototype.
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