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Design of SRM driven BESS based PV powered water pumping system

机译:基于SRM驱动的BESS光伏抽水系统的设计。

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The paper intends to design a stand-alone, self-sufficient, reliable and efficient water pumping system employing a switched reluctance motor (SRM) drive. The proposed topology of SRM-pump drive is powered by the photovoltaic (PV) array and assisted by the battery energy storage system (BESS) which enables for a PV-battery hybrid system capable of pumping rated volume of water continuously throughout the day irrespective of variations in the solar energy availability. The bidirectional buck-boost DC-DC converter is designed to maintain DC link voltage at a desired value to control the power flow throughout the system. An incremental conductance (IC) maximum power point transfer (MPPT) control algorithm, used primarily for power optimization of the PV array, is executed using a boost converter. The fundamental switching of the mid-point converter used for phase commutation of the SRM drive reduces the losses in the drive and increases the efficiency of the proposed system. Self-starting of the motor is achieved through a speed feedback controlled gating scheme for the phase commutation of the SRM. Soft starting of the SRM is realized through advanced angle control and IC algorithm. The torque ripple minimization of the SRM drive is obtained by optimizing the turn-on and turn-off angles. The proposed system is modeled in MATLAB and is analyzed under varying environmental conditions. The attained results substantiate its utility and worthiness as an effective water pumping system.
机译:本文打算设计一个采用开关磁阻电机(SRM)驱动器的独立,自给自足,可靠和高效的水泵系统。 SRM泵驱动器的建议拓扑由光伏(PV)阵列供电,并由电池能量存储系统(BESS)辅助,该电池能量存储系统使PV-电池混合动力系统能够全天连续抽额定水量,而无需考虑太阳能可用性的变化。双向降压-升压型DC-DC转换器旨在将DC链路电压维持在所需值,以控制整个系统的功率流。使用升压转换器执行增量电导(IC)最大功率点传输(MPPT)控制算法,该算法主要用于PV阵列的功率优化。用于SRM驱动器换相的中点转换器的基本开关可减少驱动器中的损耗并提高所提出系统的效率。电机的自启动是通过速度反馈控制的门控方案实现的,用于SRM的换相。 SRM的软启动通过先进的角度控制和IC算法实现。通过优化开启和关闭角度,可以使SRM驱动器的转矩脉动最小化。所提出的系统在MATLAB中建模,并在变化的环境条件下进行了分析。所获得的结果证实了其作为有效的抽水系统的实用性和价值。

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