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首页> 外文期刊>Electrical engineering >An improved sensorless DTC-SVM for three-level inverter-fed permanent magnet synchronous motor drive
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An improved sensorless DTC-SVM for three-level inverter-fed permanent magnet synchronous motor drive

机译:用于三级逆变器馈电永磁同步电动机驱动的改进的无传感器DTC-SVM

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摘要

A speed-sensorless control strategy is investigated in a wide speed range based on extended Kalman filter (EKF) and direct torque control with space vector modulation (DTC-SVM) for three-level cascaded H-bridge inverter-fed permanent magnet synchronous motor drives. The implementation of conventional SVM technique to the multilevel inverters is considerably complicated and leads to high computational burden. A three-level SVM technique simplified on the basis of two-level voltage vector diagram is proposed to reduce this computational complexity, and in addition, to satisfy some requirements for the safe operation of the inverter such as smooth commutation and minimum number of switching. The estimations of rotor position and speed are achieved using an EKF without high-frequency signal injection, especially at very low and zero speeds. The load torque is also estimated simultaneously to account for the mechanical frictions at steady state to improve the estimation performance. Furthermore, the flux trajectory control based on maximum torque per ampere algorithm is implemented to ensure maximal efficiency for constant torque region. The feasibility and effectiveness of the proposed drive system is tested under different operating conditions and verified by the simulation results.
机译:基于扩展卡尔曼滤波器(EKF)和带有空间矢量调制(DTC-SVM)的直接转矩控制,对三级级联H桥式逆变器馈电器馈电永磁同步电动机驱动器中的速度传感器控制策略进行了速度传感器控制策略。传统SVM技术对多级逆变器的实现显着复杂并导致高计算负担。提出了一种基于两级电压矢量图简化了三级SVM技术,以降低该计算复杂性,并且此外,为了满足逆变器的安全操作的一些要求,例如平滑的换向和最小交换次数。使用EKF在没有高频信号注入的情况下实现转子位置和速度的估计,尤其是在非常低和零速度。还同时估计负载扭矩以解释稳态的机械摩擦以改善估计性能。此外,实现了基于每个安培算法的最大扭矩的磁通轨迹控制,以确保恒定扭矩区域的最大效率。在不同的操作条件下测试所提出的驱动系统的可行性和有效性,并通过模拟结果验证。

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