基于 MIWO 的光伏系统 MPPT,用于感应电机驱动的水泵系统

S. Anbuchandran , D. Silas Stephen , M. Arumuga Babu , A. Bhuvanesh
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引用次数: 0

摘要

基于可再生能源的水泵系统(WPS)在饮用水、农业和工业用水方面越来越受欢迎。位于当地的独立光伏(PV)供电 WPS 可以提供可行的供水解决方案,尤其是感应电机(IM),因为它比其他类型的电机更具优势。然而,太阳能光伏发电的能量输出受天气条件的影响很大,需要使用蓄电池等储能系统,这就增加了成本并需要维护。本研究为光伏供电的 IM 驱动型 WPS 提出了一种不依赖电池的高效能源管理系统。该系统能有效处理部分遮光条件(PSC),这要归功于结合了 "改良侵扰优化(MIWO)"机制和 "扰动和观察(P&O)"方法的无传感器速度控制器。该控制器将逆变器用作 MPPT 电路,无需单独的转换器来跟踪 MPP。P&O-MIWO 混合方法的结果与 P&O 与 GA、PSO 和 GWO 混合方法的结果进行了比较,以评估各种 PSC 下的效率。直流链路电压控制和电机速度控制采用了 TS-Fuzzy 控制器。在 MATLAB 中使用 Simulink 模型对所提出的系统进行了不同场景的分析和验证。结果表明,P&O-MIWO 混合机制提高了光伏装置的发电量,而无需依赖储能设备,为基于光伏的 WPS 实施提供了经济高效的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

MIWO based MPPT of PV system for induction motor driven water pumping system

MIWO based MPPT of PV system for induction motor driven water pumping system
Renewable energy source-based Water Pumping Systems (WPSs) have gained popularity for drinking, agricultural, and industrial purposes. Locally situated standalone Photovoltaic (PV) powered WPS can provide a viable water supply solution, especially with induction motors (IM) due to their advantages over other motor types. However, solar PV energy output is greatly influenced by weather conditions, necessitating energy storage systems like batteries, which increase costs and require maintenance. This research proposes an efficient energy management system for a PV-powered IM-driven WPS that does not rely on batteries. The system handles Partial Shading Conditions (PSC) effectively, thanks to a sensorless speed controller combining a Modified Invasive Weed Optimization (MIWO) mechanism with the Perturb and Observe (P&O) method. This controller uses the inverter as an MPPT circuit, eliminating the need for a distinct converter to follow the MPP. The hybrid P&O-MIWO method's outcomes are compared with those of P&O hybridization with GA, PSO, and GWO to assess efficiency under various PSCs. TS-Fuzzy controllers are employed for voltage control at the DC-link and motor speed. The proposed system is analyzed across different scenarios and validated using a Simulink model in MATLAB. Results indicate that the hybrid P&O-MIWO mechanism enhances energy generation from the PV unit without relying on energy storage devices, providing a cost-effective solution for PV-based WPS implementation.
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