Due to development of distribution systems and increase in electricity demand,the use of capacitor banks increases.From the other point of view,nonlinear loads generate and inject considerable harmonic currents into p...Due to development of distribution systems and increase in electricity demand,the use of capacitor banks increases.From the other point of view,nonlinear loads generate and inject considerable harmonic currents into power system.Under this condition if capacitor banks are not properly selected and placed in the power system,they could amplify and propagate these harmonics and deteriorate power quality to unacceptable levels.With attention of disadvantages of passive filters,such as occurring resonance,nowadays the usage of this type of harmonic compensator is restricted.On the other side,one of parallel multi-function compensating devices which are recently used in distribution system to mitigate voltage sag and harmonic distortion,performs power factor correction,and improves the overall power quality as active power conditioner(APC).Therefore,the utilization of APC in harmonic distorted system can affect and change the optimal location and size of shunt capacitor bank under harmonic distortion condition.This paper presents an optimization algorithm for improvement of power quality using simultaneous optimal placement and sizing of APC and shunt capacitor banks in radial distribution networks in the presence of voltage and current harmonics.The algorithm is based on particle swarm optimization(PSO).The objective function includes the cost of power losses,energy losses and those of the capacitor banks and APCs.展开更多
近年来,变电站真空断路器投切10 k V并联电容器组时发生了多起断路器或电容器炸裂事故,在更换断路器和改善保护措施后,此类事故还是屡禁不止。为减少该工况下绝缘事故的发生,重庆市某110 k V变电站采用分相控制技术的永磁机构真空断路...近年来,变电站真空断路器投切10 k V并联电容器组时发生了多起断路器或电容器炸裂事故,在更换断路器和改善保护措施后,此类事故还是屡禁不止。为减少该工况下绝缘事故的发生,重庆市某110 k V变电站采用分相控制技术的永磁机构真空断路器来抑制投切电容器组时的合闸涌流和降低分闸重燃概率。相控断路器是抑制并联电容器合闸涌流与分闸过电压的重要措施之一。为了验证该技术的有效性,首先基于电路理论分析了合闸角对合闸涌流的影响以及分闸过电压机理,之后在重庆市某110 k V变电站针对某种型号相控断路器与普通真空断路器合(分)闸10 k V并联电容器进行了一系列的现场试验研究。试验结果表明:相控断路器的控制精度高(合(分)闸误差均在±0.3 ms以内);普通真空断路器的合闸涌流高达4.5倍额定电流,而相控断路器的合闸涌流均在2.4倍额定电流以下;控制分闸技术能够保证首开相的工频续流开断时断路器断口间有足够的开距,降低重燃发生的概率,从而提高系统运行的安全性与可靠性。展开更多
准确预测电容器组在一段时间内的电容,分析其变化趋势,对并联电容器组的安全使用、延长寿命有很重要的意义。本文提出一种基于Microsoft时序算法,采用电能质量监测数据的10 k V侧并联电容器组电容预测模型,并在此基础上设计了并联电容...准确预测电容器组在一段时间内的电容,分析其变化趋势,对并联电容器组的安全使用、延长寿命有很重要的意义。本文提出一种基于Microsoft时序算法,采用电能质量监测数据的10 k V侧并联电容器组电容预测模型,并在此基础上设计了并联电容组电容趋势分析及预测预警系统。通过该系统,用户不仅能够监测电容器组的运行状态,为电容器组故障分析提供可靠依据,而且可以预测电容器组电容值的变化趋势,并实现其寿命预警。实际运行效果验证了该模型的可行性与准确性。展开更多
文摘Due to development of distribution systems and increase in electricity demand,the use of capacitor banks increases.From the other point of view,nonlinear loads generate and inject considerable harmonic currents into power system.Under this condition if capacitor banks are not properly selected and placed in the power system,they could amplify and propagate these harmonics and deteriorate power quality to unacceptable levels.With attention of disadvantages of passive filters,such as occurring resonance,nowadays the usage of this type of harmonic compensator is restricted.On the other side,one of parallel multi-function compensating devices which are recently used in distribution system to mitigate voltage sag and harmonic distortion,performs power factor correction,and improves the overall power quality as active power conditioner(APC).Therefore,the utilization of APC in harmonic distorted system can affect and change the optimal location and size of shunt capacitor bank under harmonic distortion condition.This paper presents an optimization algorithm for improvement of power quality using simultaneous optimal placement and sizing of APC and shunt capacitor banks in radial distribution networks in the presence of voltage and current harmonics.The algorithm is based on particle swarm optimization(PSO).The objective function includes the cost of power losses,energy losses and those of the capacitor banks and APCs.
文摘近年来,变电站真空断路器投切10 k V并联电容器组时发生了多起断路器或电容器炸裂事故,在更换断路器和改善保护措施后,此类事故还是屡禁不止。为减少该工况下绝缘事故的发生,重庆市某110 k V变电站采用分相控制技术的永磁机构真空断路器来抑制投切电容器组时的合闸涌流和降低分闸重燃概率。相控断路器是抑制并联电容器合闸涌流与分闸过电压的重要措施之一。为了验证该技术的有效性,首先基于电路理论分析了合闸角对合闸涌流的影响以及分闸过电压机理,之后在重庆市某110 k V变电站针对某种型号相控断路器与普通真空断路器合(分)闸10 k V并联电容器进行了一系列的现场试验研究。试验结果表明:相控断路器的控制精度高(合(分)闸误差均在±0.3 ms以内);普通真空断路器的合闸涌流高达4.5倍额定电流,而相控断路器的合闸涌流均在2.4倍额定电流以下;控制分闸技术能够保证首开相的工频续流开断时断路器断口间有足够的开距,降低重燃发生的概率,从而提高系统运行的安全性与可靠性。
文摘准确预测电容器组在一段时间内的电容,分析其变化趋势,对并联电容器组的安全使用、延长寿命有很重要的意义。本文提出一种基于Microsoft时序算法,采用电能质量监测数据的10 k V侧并联电容器组电容预测模型,并在此基础上设计了并联电容组电容趋势分析及预测预警系统。通过该系统,用户不仅能够监测电容器组的运行状态,为电容器组故障分析提供可靠依据,而且可以预测电容器组电容值的变化趋势,并实现其寿命预警。实际运行效果验证了该模型的可行性与准确性。