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A Control Scheme to Enhance Power Productivity Using Static Synchronous Condenser for Wind Energy System

机译:风能系统中使用静态同步冷凝器提高发电效率的控制方案

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Power we gain from wind energy system is notconstant because of the fluctuations of wind and it won’t be inphase with the grid load power. This may affect the powerproductivity. The power quality and wind turbine performanceare measured on the basis of measurements and norms beingspecified in international-technical Commission standard.Injectionof the active power, reactive power, variation of voltage,flicker, harmonics, and electrical behavior of switchingoperations that are measured as per the national/internationalguidelines. The paper mainly concerns about the power stabilityproblem due to wind turbine installation with the grid. In thisscheme a static synchronous compensator is connected at acommon coupling with a battery energy storage system (BESS) tolessen the power productivity issues. The BESS is integrated tosustain the real power source under fluctuating wind power. Thestatic synchronous compensator control scheme for wind energysystem for power quality improvement is simulated usingMATLAB/SIMULINK in power system block set. The proposedscheme lessens the effect of reactive power demand of the load onthe main supply source and on the induction generator. Thecontrol scheme for power productivity improvement and grid coordinationrule been presented are as per IEC-standard.
机译:由于风的波动,我们从风能系统获得的功率不是恒定的,并且不会与电网负载功率同相。这可能会影响生产率。电能质量和风力涡轮机性能是根据国际技术委员会标准中指定的测量和规范进行测量的。有功功率,无功功率,电压变化,闪烁,谐波和开关操作的电气性能的注入均按照国家/国际准则。本文主要关注由于风力涡轮机与电网安装而引起的功率稳定性问题。在该方案中,静态同步补偿器与电池储能系统(BESS)共同连接,以消除功率生产率问题。 BESS被集成以在风能波动的情况下维持实际电源。使用MATLAB / SIMULINK在电力系统模块集中模拟了用于改善电能质量的风能系统的静态同步补偿器控制方案。所提出的方案减轻了负载的无功功率需求对主电源和感应发电机的影响。提出了用于提高电力生产率和电网协调规则的控制方案,并符合IEC标准。

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