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Intelligent Nonlinear Sensorless Predictive Field Oriented Control of PMSM Drive for Three Wheeler Hybrid Solar PV-Battery Electric Vehicle

机译:三轮混合动力态太阳能光伏电动车辆PMSM驱动器智能非线性无传感器预测电场定向控制

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This paper explores a hybrid solar photovoltaic (PV)-battery based electric auto-rickshaw driven by a permanent magnet synchronous motor (PMSM) drive with sensorless control. The widely used PMSM drive employs standard field oriented control for electric vehicle (EV) applications. However, the PI controllers used for the speed control and current control loops, have various shortcomings with the dynamic driving conditions demanding high performance controllers. This paper aims to eliminate the PI controllers by using fuzzy logic based speed controller and model predictive current controller. Further, the cost reduction is achieved through position sensorless control using the active flux observer based position and noiseless speed estimation. This combined package of nonlinear controllers, enhances the starting, steady state and dynamic performance of the sensorless drive. Maximum power is extracted from the solar PV array using perturb and observe (P&O) algorithm. Along with the feasibility study for Indian scenario, the performance of the proposed drive system is simulated using MATLAB Simulink and presented in the paper.
机译:本文探讨了具有无传感器控制的永磁同步电动机(PMSM)驱动器驱动的混合型太阳能光伏(PV)电动自动人力车。广泛使用的PMSM驱动器采用标准的电动车辆(EV)应用方向定向控制。然而,用于速度控制和电流控制环路的PI控制器具有具有高性能控制器的动态驾驶条件的各种缺点。本文旨在通过采用模糊逻辑的速度控制器和模型预测电流控制器来消除PI控制器。此外,通过使用基于主动磁通观测器的位置和无噪声速度估计来实现通过定位无传感器控制来实现成本降低。这种非线性控制器的组合包装,增强了无传感器驱动器的起始,稳态和动态性能。使用扰动和观察(P&O)算法从太阳能光伏阵列中提取最大功率。随着印度情景的可行性研究,使用Matlab Simulink模拟所提出的驱动系统的性能,并呈现在纸张中。

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