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Model Predictive Control of a Two-Motor Drive With Five-Leg-Inverter Supply

机译:具有五柱逆变器电源的两电机驱动器的模型预测控制

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Model predictive control (MPC) for a two-motor drive, supplied from a five-leg inverter, is presented in this paper. As an alternative to existing methods, use of MPC in multimachine drives has the advantages of independent fast current control of the machines, elimination of the closed-loop system's cascaded structure, and a reduced number of microcontrollers. A vector control algorithm is required, necessitating state-space modeling, with each machine's direct- and quadrature-axis currents chosen as state variables. Prediction of future states is via a discrete-time model of the five-leg inverter and a piecewise-affine model of two permanent-magnet synchronous motors (PMSMs). A method which eliminates unfeasible switching states inherent in reduced-switch-count inverters while reducing computation and sampling times is proposed. The algorithm is implemented in a TMS320F28335 DSP microcontroller, which controls the five-leg inverter and the two PMSMs. Simulation and experimental results validate the presented control concept.
机译:本文介绍了由五脚逆变器提供的两电机驱动器的模型预测控制(MPC)。作为现有方法的替代方法,在多机驱动器中使用MPC具有以下优势:可独立控制机器的快速电流,消除闭环系统的级联结构并减少微控制器的数量。需要矢量控制算法,需要进行状态空间建模,并选择每台机器的直流和正交轴电流作为状态变量。未来状态的预测是通过五臂逆变器的离散时间模型和两个永磁同步电动机(PMSM)的分段仿射模型进行的。提出了一种方法,该方法消除了减少开关次数的逆变器固有的不可行的开关状态,同时减少了计算和采样时间。该算法在TMS320F28335 DSP微控制器中实现,该微控制器控制五桥臂逆变器和两个PMSM。仿真和实验结果验证了所提出的控制概念。

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