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Reduced-Sensor-Based PV Array-Fed Direct Torque Control Induction Motor Drive for Water Pumping

机译:基于传感器的PV阵列供给的直接扭矩控制感应电机驱动器用于水泵

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摘要

This paper aims at the design, control, and implementation of a solar photovoltaic (PV) array-fed speed sensorless direct torque control of an induction motor drive (IMD) for water pumping in a standalone as well as battery-connected hybrid mode. This stator flux estimated by the proposed flux observer is used for speed estimation. A dc-link current sensor is used to reconstruct the motor phase currents by modified active voltage vector. One voltage sensor for dc-link voltage sensing and only one current sensor for dc-link current sensing are used in this system for standalone operation of the system. All other required quantities are estimated through these two sensed signals. The IMD is energized by a PV array, which is operated at maximum power point (MPP). A perturb and observe control algorithm with additional flow rate controller is proposed for MPP, which tracksMPP throughout the operating range and provides the facility to control the flow rate. The suitability of the system is judged through simulated results in MATLAB/Simulink as well as test results obtained on a prototype developed in the laboratory.
机译:本文旨在设计,控制和实施太阳能光伏(PV)阵列供给速度传感器直接扭矩控制的感应电动机驱动器(IMD),用于在独立的水上泵送以及电池连接的混合模式。由所提出的磁通观测器估计的该定子磁通用于速度估计。 DC-Link电流传感器用于通过修改的主动电压矢量重建电机相电流。用于DC-Link电压感测的一个电压传感器,并且在该系统中使用了用于DC-Link电流传感的一个电流传感器,用于系统的独立操作。通过这两个感测信号估计所有其他所需的量。 IMD通过PV阵列通电,该PV阵列在最大功率点(MPP)下操作。提出了一种具有附加流量控制器的扰动和观察控制算法,MPP,其在整个操作范围内进行操作系统,并提供控制流量的设施。通过Matlab / Simulink的模拟结果来判断系统的适用性以及在实验室开发的原型上获得的测试结果。

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