用损耗敏感系数法改进电压分布的太阳能光伏系统并网

J. Bhutto, Abdulwasa B. Barnawi, M. Abdullah, S. Gupta
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摘要

提出了一种利用损耗敏感因子(LSF)改善并网光伏系统电压分布的方法。如今,许多政府都鼓励人们在屋顶、农田、办公楼安装光伏系统,以增加电力供应,减少使用传统能源如煤炭、柴油等的发电量。这些光伏电站入网的持续增加将影响电网的电压分布。因此,保持电网供电电压在限制范围内,并网光伏发电不亏是一个很大的挑战。本文提出的损耗敏感因子技术是利用损耗权重因子来计算功率损耗,实现电网同步,使集成过程中的功率损耗最小化,从而改善电压分布。该方法有助于确定有源滤波器在电网中的最佳位置。在MATLAB Simulink软件中建立了光伏系统模型,并提出了LSF方法。通过严格的仿真测试,对所提出的LSF技术进行了验证。仿真结果表明,所提出的LSF技术能够很好地识别系统需求,并联型有源电力滤波器在补偿电能质量问题和保持电压电流曲线符合标准方面取得了良好的效果。
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Integration of Solar Photovoltaic Systems to Grid using Loss Sensitivitity Factor method for Improvement of Voltage Profile
This paper presents a loss sensitivity factor (LSF) technique for improving the voltage profile of the grid connected photovoltaic (PV) system. Now a days, many of governments are encouraging people to install PV systems in their rooftops, agriculture fields, office buildings to increase the power supplies and reduce the power generation by using conventional energy sources like coal, diesel, etc. Continue increase of integration these PV power plants to grid will affect the voltage profile of the grid. Hence, maintaining the grid supply voltage within the limit and integration of generated PV power without deficient is a big challenge. The proposed loss sensitivity factor techniques is uses loss weight factor in calculation of power loss, grid synchronization and minimizes power loss during integration, therefore the voltage profile will be improved. This technique help to identify optimal placing of active power filters in the power system network. The PV system model is developed in MATLAB Simulink software and developed the proposed LSF method. A rigorous simulation tests are conducted to test the proposed LSF techniques. The simulation results have shown that the proposed LSF technique is working well in identifying the system requirements and shunt active power filter is working in compensating power quality issues and maintain voltage and current profiles as per standards.
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