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Energy storage to strengthen the wind generator in integrated power system

机译:储能存储在集成电力系统中加强风力发生器

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The wind energy generation, utilization and its grid penetration in electrical grid is increasing world wide. The wind generated power is always fluctuating due to its time varying nature and causing stability problem. This weak interconnection of wind generating source in the electrical network affect the power quality and reliability. The localized energy storages shall compensate the fluctuating power and support to strengthen the wind generator in the power system. In this paper, it is proposed to control the voltage source inverter (VSI) in current control mode with energy storage, that is, batteries across the dc bus. The generated wind power can be extracted under varying wind speed and stored in the batteries. This energy storage maintains the stiff voltage across the dc bus of the voltage source inverter. The propose scheme enhances the stability and reliability and maintain unity power factor as well as operated in stand alone mode in the power system. The power exchange across the wind generation and the load under dynamic situation is feasible while maintaining the power quality norms at the common point of coupling, strengthen the weak grid in the power system. This control strategy is evaluated on the test system under dynamic condition by using simulation.
机译:电网中的风能产生,利用及其网格渗透在全球范围内增加。由于其时变性,而且导致稳定性问题,风引起的动力始终波动。电气网络中的风力产生源的这种弱互连会影响功率质量和可靠性。局部能量储存应补偿波动的功率和支撑,以加强电力系统中的风力发生器。在本文中,建议使用能量存储器控制电流控制模式中的电压源逆变器(VSI),即DC总线上的电池。产生的风力可以在不同的风速下提取并储存在电池中。该能量存储在电压源逆变器的直流总线上保持刚性电压。该提议方案提高了稳定性和可靠性,维护了Unity功率因数以及在电力系统中的独立模式下操作。在动态情况下,动力产生的电源交换是可行的,同时保持电力质量规范在耦合的公共点,加强电力系统中的弱网格。通过使用模拟在动态条件下对测试系统进行评估该控制策略。

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