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DTC based BLDC Motor Controlled Centrifugal Pump Fed by PI-BFO Tuning Strategy for Buck-Boost Converter in Solar PV Array Water Pumping System

机译:基于DTC的BLDC电机控制离心泵,由PI-BFO调整策略提供给太阳能光伏阵列水泵系统中的Buck-Boost转换器

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In this paper, the performance of the directly coupled solar photovoltaic water pumping system has been investigated at different conditions of solar radiation, ambient temperature and speed. A BLDC motor is employed to drive a centrifugal pump coupled to its shaft due to merits of high efficiency and compact size of this drive. This system utilizes a Buck-Boost converter as an interface DC-DC converter between the solar photovoltaic array and the inverter of BLDC motor drive. The application of direct torque control strategy to BLDC drives has been investigated. In this control method for BLDC drive, direct control of stator flux and electromagnetic torque, and attainment rapid torque response and the high efficiency is possible by choosing the efficient modes of switching inverter to confine flux and torque error in a proper hysteresis band. MATLAB software is used to analysis, design and control of this system and represent the performance of transient and steady state response of SPV array powered Buck-Boost converter fed BLDC driven water pumping system. Simulated results are displayed, and it is shown that, compared with conventional hysteresis and PWM current control, the BFO-PI strategy results in reduced current and torque ripple, robust performance, faster dynamic response and lower steady state error under different mode operation.
机译:本文研究了直接耦合太阳能光伏水泵系统在不同太阳辐射,环境温度和速度条件下的性能。由于该驱动器的高效率和紧凑尺寸的优点,所以采用BLDC电动机来驱动与其轴相连的离心泵。该系统利用降压-升压转换器作为太阳能光伏阵列与BLDC电机驱动器的逆变器之间的接口DC-DC转换器。研究了直接转矩控制策略在BLDC驱动器中的应用。在这种用于BLDC驱动的控制方法中,通过选择有效的开关逆变器模式以将磁通和转矩误差限制在适当的磁滞带内,可以直接控制定子磁通和电磁转矩,并获得快速的转矩响应和高效率。 MATLAB软件用于分析,设计和控制该系统,并代表由SPV阵列供电的Buck-Boost转换器BLDC驱动的抽水系统的瞬态和稳态响应性能。仿真结果显示,与传统的磁滞和PWM电流控制相比,BFO-PI策略可在不同模式下降低电流和转矩纹波,增强鲁棒性能,加快动态响应,并降低稳态误差。

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