首页> 外文会议>Power Electronics for Distributed Generation Systems (PEDG), 2012 3rd IEEE International Symposium on >Unified compensation control of a hybrid energy storage system for enhancing power quality and operation efficiency in a diesel and wind-turbine based stand-alone microgrid
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Unified compensation control of a hybrid energy storage system for enhancing power quality and operation efficiency in a diesel and wind-turbine based stand-alone microgrid

机译:混合动力储能系统的统一补偿控制,可提高基于柴油和风轮机的独立微电网的电能质量和运行效率

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摘要

An intermittent power of renewable sources such as wind turbine and photovoltaic system can damage power quality and operation efficiency of generator. Specially, in case of standalone microgrid such as island power system, this intermittent characteristic of renewable resource can lead to severe problems, such as frequency oscillation and power fluctuation. This frequency oscillation and power fluctuation can be a cause of system stability problem and operation efficiency drop. This paper presents unified compensation control strategy of a hybrid electric energy storage system in order to improve power quality and operating efficiency in a diesel and wind-turbine based stand-alone microgrid. This study addressed an AC hybrid energy storage system which was composed of lead acid battery storage and electric double layered capacitor, and presented a compensation control strategy with modified droop and wind power compensation for damping system frequency and power fluctuation. Usefulness of the proposed control algorithm is verified by experimental test results for system frequency, voltage, power fluctuation of the generator, and operation efficiency. Comparison tests with conventional compensation methods were performed to validate the effectiveness of the proposed control method.
机译:诸如风力涡轮机和光伏系统之类的可再生资源的间歇性电力会损害发电机的电能质量和运行效率。特别地,在诸如岛屿电力系统的独立微电网的情况下,可再生资源的这种间歇性特性会导致严重的问题,例如频率振荡和功率波动。这种频率振荡和功率波动可能是系统稳定性问题和运行效率下降的原因。本文提出了一种混合动力储能系统的统一补偿控制策略,以提高基于柴油机和风轮机的独立微电网的电能质量和运行效率。本文研究了一种由铅酸蓄电池组和双层电容器组成的交流混合动力储能系统,提出了一种采用修正下垂和风能补偿的阻尼系统频率和功率波动补偿控制策略。通过系统频率,电压,发电机功率波动和运行效率的实验测试结果验证了所提出的控制算法的有效性。进行了与常规补偿方法的对比测试,以验证所提出的控制方法的有效性。

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