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MPPT control technique for solar powered direct torque control of induction motor drive with a robust speed and parameters adaptation scheme for water pumping

机译:MPPT控制技术,用于感应电动机驱动的太阳能直接转矩控制,具有鲁棒的速度和适用于抽水的参数自适应方案

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This paper presents a novel robust model reference adaptive system (MRAS) technique for rotor speed estimation of direct torque control (DTC) of an induction motor drive used for solar PV powered water pumping. The maximum power point tracking (MPPT) of PV array is assured by a proposed P&O algorithm, which has improved tracking time without deviation during insolation change. Moreover, an additional loop is incorporated in the MPPT control, which provides an additional feature of derating the panel, which consequently controls the flow rate. The effect of parameter variation e.g. change in rotor resistance, stator resistance and the rotor time constant on the stability of overall system, is analysed and tested. The MRAS involves fluxes estimation and uses the same machine parameters which are involved in DTC. The elimination of speed sensor and parameters adaptation make the overall induction motor drive (IMD) suitable for such application. The stability of the system is assured by Lyapunov's stability criterion and the stability of parameters adaptation is shown by Bode plot and well-known Popov's stability criterion. Therefore, the reduced sensors (voltage and current sensors) based proposed system with deviation-free MPPT technique and with flow rate controller, is modeled, simulated, and experimentally verified.
机译:本文提出了一种新颖的鲁棒模型参考自适应系统(MRAS)技术,用于估算用于太阳能PV抽水的感应电动机驱动器的直接转矩控制(DTC)的转子速度。提出的P&O算法可确保PV阵列的最大功率点跟踪(MPPT),该算法改进了跟踪时间,在日照变化期间不会出现偏差。此外,MPPT控件中包含一个附加回路,该附加回路提供了使面板降额的附加功能,从而控制了流量。参数变化的影响分析并测试了转子电阻,定子电阻和转子时间常数对整个系统稳定性的变化。 MRAS涉及通量估计,并使用DTC中涉及的相同机器参数。消除了速度传感器和参数调整,使整个感应电动机驱动器(IMD)适于此类应用。系统的稳定性由Lyapunov的稳定性准则来保证,而参数自适应的稳定性由Bode图和著名的Popov的稳定性准则来证明。因此,对基于减少传感器(电压和电流传感器)的拟议系统进行了建模,仿真和实验验证,该系统采用无偏差MPPT技术和流量控制器。

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