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Standalone PV-BES Based Synchronous Reluctance Motor Drive for Water Pump

机译:基于Sypla的独立PV-BES基于同步磁阻电机驱动

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This demonstrates a robust and inexpensive pumping system for an uninterrupted rated capacity of water supply. This system offers efficient power management between solar PV array with the battery energy storage (BES) utilizing a synchronous reluctance motor (SYRM) to pump water. In this two stage solar energy conversion system, a DC stage boost converter is employed for driving the PV array at maximum power point (MPP), and a three phase voltage source inverter is used to control of SYRM-pump. A speed sensor less vector control algorithm is used to control the SYRM. Owing to full potential water discharge irrespective of the atmospheric conditions, a BES is used to provide the additional required power. Moreover, in the non-pumping duration hours, the solar PV array’s power is used to charge the BES. In this system, an Incremental conductance (INC) algorithm is destined not only for the PV array to operate at MPP but also to safeguard the BES by ensuring the charging current’s safe limits. This algorithm is responsible for charging the BES whenever solar power is available and trip the PV power based on its SOC (state of charge). The modeling of the overall system is carried in the MATLAB/ Simulink environment. Obtained results show the suitability of the system for the solar pump application.
机译:这证明了一种坚固且廉价的泵送系统,用于不间断的供水能力。该系统在太阳能光伏阵列之间提供高效的电源管理,电池储能(BES)利用同步磁阻电机(Syrm)来泵送水。在这两个阶段太阳能转换系统中,采用DC级升压转换器用于在最大功率点(MPP)处驱动PV阵列,并且三个相电压源逆变器用于控制Syrm-泵。速度传感器较少的矢量控制算法用于控制SYRM。由于全潜在的排水,无论大气条件如何,都用于提供额外的所需功率。此外,在非泵送持续时间,太阳能光伏阵列的功率用于为BES充电。在该系统中,增量电导(INC)算法不仅用于PV阵列在MPP运行,而且通过确保充电电流的安全限制来保护BES。该算法负责在太阳能可用并基于其SOC(充电状态)时为BES充电。整个系统的建模是在MATLAB / SIMULINK环境中携带的。获得的结果显示了系统为太阳能泵应用的适用性。

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