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Maximum Output Power Control of Permanent Magnet Synchronous Motor Based on Energy-shaping Principle

机译:基于能量整形原理的永磁同步电动机最大输出功率控制

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The energy-shaping controller design technique is adopted to asymptotic speed regulation of permanent magnet synchronous motors. The dynamical system is viewed as energy-transformation device, which is particularly useful in studying complex nonlinear system. In this article, the PCH (port-controlled Hamiltonian) speed control model of PMSM is established. The speed controller, satisfying the maximum output power control theory, is proposed using energy-shaping principle. The resulting scheme consists of a state feedback to which a load torque observer is added to estimate the unknown load torque. The stabilization analysis of equilibrium is presented as well. Simulation results show that the control strategy proposed in this paper gives satisfactory performance both at steady state and during transients.
机译:采用能量整形控制器设计技术对永磁同步电动机的渐近速度调节。动态系统被视为能量变换装置,其在研究复杂的非线性系统方面特别有用。在本文中,建立了PCE的PCH(端口控制的HAMILTONIAN)速度控制模型。满足最大输出功率控制理论的速度控制器采用能量整形原理提出。得到的方案包括向加载扭矩观测器添加到估计未知负载扭矩的状态反馈。展示了均衡的稳定分析。仿真结果表明,本文提出的控制策略在稳态和瞬态期间都具有令人满意的性能。

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