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A Novel Vector Control Scheme for PMSM Driven Encoder-Less Solar Water Pumping System

机译:PMSM驱动无编码器太阳能抽水系统的新型矢量控制方案

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This work presents a solar photovoltaic (PV) array fed permanent magnet synchronous motor (PMSM) driven single stage solar water pumping (SWP) system. A novel vector control scheme with reduced computational burden due to elimination of speed controller, is proposed here for speed control of PMSM. An adaptive step size perturb and observe maximum power point tracking technique is used to accelerate the response of the system. The back-electro-motive force based technique is used for encoder-less estimation of rotor position. This improves the reliability and reduces the cost of the SWP system. A single stage topology is utilized for reducing the losses and cost associated with intermediate stage DC-DC converter. The applicability of the overall system is validated through a developed laboratory prototype using digital signal processor (DS-1202). Performance of the system has been found to be quite satisfactory under both dynamic and steady state conditions.
机译:这项工作提出了太阳能光伏(PV)阵列馈电永磁同步电动机(PMSM)驱动的单级太阳能抽水(SWP)系统。本文提出了一种新颖的矢量控制方案,该方案由于消除了速度控制器而减少了计算量,从而实现了PMSM的速度控制。自适应步长扰动和观测最大功率点跟踪技术用于加速系统的响应。基于反电动势的技术用于转子位置的无编码器估算。这提高了可靠性并降低了SWP系统的成本。利用单级拓扑来减少与中间级DC-DC转换器相关的损耗和成本。整个系统的适用性通过使用数字信号处理器(DS-1202)的开发实验室原型进行验证。已经发现该系统在动态和稳态条件下的性能都令人满意。

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