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Real and Reactive Power Control in a Three Phase Unbalanced Load Supported by Solar PV Plant at Consumer End

机译:消费者端太阳能光伏电站支持的三相不平衡负载的有功和无功控制

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摘要

In-order to improve the performance of electrical network with three phase industrial loads the real power and reactive power control is essential in today's power crisis scenario. The reactive support is obtained by conventional devices like synchronous condenser, static capacitors, and- Flexible AC Transmission System (FACTS) devices. These devices support only reactive power with additional initial cost and maintenance cost. The proposed Voltage Source Inverter (VSI) based solar power plant gives real power support at day time and it is utilized as a STAticvar COMpensator (STATCOM) at night time and gives reactive power support to the loads. The installation of solar power plant at consumer side eliminates the need for additional transmission lines and related losses and also leaves the existing lines free for other utilities and loads. The proposed Individual Phase Current Sensing (IPCS) control technique for VSI based solar power plant gives better support on reactive power at both balanced and unbalanced load conditions compared with conventional Sinusoidal Pulse Width Modulation (SPWM) technique. A proto type is fabricated and tested for various loads. The power factor cos0 of the system is improved from 0.954 to 0.991 for balance load and 0.987 for unbalanced loads.
机译:为了提高三相工业负载的电网性能,在当今的电源危机情况下,有功功率和无功功率控制至关重要。反应性载体是通过常规设备获得的,例如同步电容器,静态电容器和柔性交流输电系统(FACTS)设备。这些设备仅支持无功功率,并具有额外的初始成本和维护成本。拟议中的基于电压源逆变器(VSI)的太阳能发电厂在白天提供有功功率支持,在夜间用作STAticvar交流发电机(STATCOM),并为负载提供无功功率支持。在用户侧安装太阳能发电厂消除了对额外输电线路和相关损失的需求,并使现有线路免费用于其他公用事业和负荷。与传统的正弦脉冲宽度调制(SPWM)技术相比,针对基于VSI的太阳能发电厂所建议的单相电流感测(IPCS)控制技术在平衡和不平衡负载条件下均能更好地支持无功功率。制造原型并测试各种负载。对于平衡负载,系统的功率因数cos0从0.954提高到0.991,对于非平衡负载,则从0.987提高到0.987。

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