针对主动配电网(active distribution network,ADN)中分布式电源和负荷随机波动的特点,提出了基于软常开开关(soft normally open point,SNOP)的主动配电系统多时间尺度控制策略。考虑SNOP的运行工作特性,提出了在长时间尺度上通过配电...针对主动配电网(active distribution network,ADN)中分布式电源和负荷随机波动的特点,提出了基于软常开开关(soft normally open point,SNOP)的主动配电系统多时间尺度控制策略。考虑SNOP的运行工作特性,提出了在长时间尺度上通过配电网全局优化策略实现对SNOP输出进行控制,在短时间尺度上通过引入电压波动迟滞控制实现对SNOP输出参考值的动态调整,以维持线路电压平稳,提升分布式电源的消纳能力。在改进的IEEE 33节点系统中,进行了长时间尺度全局优化、短时间尺度动态调整分析,并对SNOP的安装位置、容量和数量进行了讨论。结果表明,基于SNOP的主动配电系统多时间尺度优化策略是有效可行的,且统一潮流控制器(unified power flow controller,UPFC)型SNOP较背靠背(back to back,B2B)型有更小的容量需求。展开更多
This paper aims at eliminating the asymmetric and saturated hysteresis nonlinearities by designing hysteresis pseudo inverse compensator and robust adaptive dynamic surface control(DSC)scheme.The"pseudo inverse&q...This paper aims at eliminating the asymmetric and saturated hysteresis nonlinearities by designing hysteresis pseudo inverse compensator and robust adaptive dynamic surface control(DSC)scheme.The"pseudo inverse"means that an on-line calculation mechanism of approximate control signal is developed by applying a searching method to the designed temporary control signal where the true control signal is included.The main contributions are summarized as:1)to our best knowledge,it is the first time to compensate the asymmetric and saturated hysteresis by using hysteresis pseudo inverse compensator because the construction of the true saturated-type hysteresis inverse model is very difficult;2)by designing the saturated-type hysteresis pseudo inverse compensator,the construction of true explicit hysteresis inverse and the identifications of its corresponding unknown parameters are not required when dealing with the saturated-type hysteresis;3)by combining DSC technique with the tracking error transformed function,the"explosion of complexity"problem in backstepping method is overcome and the prespecified tracking performance is achieved.Analysis of stability and experimental results on the hardware-inloop platform illustrate the effectiveness of the proposed adaptive pseudo inverse control scheme.展开更多
文摘针对主动配电网(active distribution network,ADN)中分布式电源和负荷随机波动的特点,提出了基于软常开开关(soft normally open point,SNOP)的主动配电系统多时间尺度控制策略。考虑SNOP的运行工作特性,提出了在长时间尺度上通过配电网全局优化策略实现对SNOP输出进行控制,在短时间尺度上通过引入电压波动迟滞控制实现对SNOP输出参考值的动态调整,以维持线路电压平稳,提升分布式电源的消纳能力。在改进的IEEE 33节点系统中,进行了长时间尺度全局优化、短时间尺度动态调整分析,并对SNOP的安装位置、容量和数量进行了讨论。结果表明,基于SNOP的主动配电系统多时间尺度优化策略是有效可行的,且统一潮流控制器(unified power flow controller,UPFC)型SNOP较背靠背(back to back,B2B)型有更小的容量需求。
基金supported in part by the National Natural Science Foundation of China(61673101,61973131,61733006,U1813201)the Japan Society for the Promotion of Science(C18K04212)+2 种基金the Science and Technology Project of Jilin Province(20180201009SF,20170414011GH,20180201004SF,20180101069JC)the Fundamental Research Funds for the Central Universities(N2008002)“Xing Liao Ying Cai”Program(XLYC1907073)。
文摘This paper aims at eliminating the asymmetric and saturated hysteresis nonlinearities by designing hysteresis pseudo inverse compensator and robust adaptive dynamic surface control(DSC)scheme.The"pseudo inverse"means that an on-line calculation mechanism of approximate control signal is developed by applying a searching method to the designed temporary control signal where the true control signal is included.The main contributions are summarized as:1)to our best knowledge,it is the first time to compensate the asymmetric and saturated hysteresis by using hysteresis pseudo inverse compensator because the construction of the true saturated-type hysteresis inverse model is very difficult;2)by designing the saturated-type hysteresis pseudo inverse compensator,the construction of true explicit hysteresis inverse and the identifications of its corresponding unknown parameters are not required when dealing with the saturated-type hysteresis;3)by combining DSC technique with the tracking error transformed function,the"explosion of complexity"problem in backstepping method is overcome and the prespecified tracking performance is achieved.Analysis of stability and experimental results on the hardware-inloop platform illustrate the effectiveness of the proposed adaptive pseudo inverse control scheme.