In order to effectively imitate the dynamic operation characteristics of the HVDC (high voltage direct current) power transmission system at a real ±500kV HVDC transmission project, the electromechanical-electr...In order to effectively imitate the dynamic operation characteristics of the HVDC (high voltage direct current) power transmission system at a real ±500kV HVDC transmission project, the electromechanical-electromagnetic transient hybrid simulation was carried out based on advanced digital power system simulator (ADPSS). In the simulation analysis, the built hybrid model's dynamic response outputs under three different fault conditions are considered, and by comparing with the selected fault recording waveforms, the validities of the simulation waveforms are estimated qualitatively. It can be ascertained that the hybrid simulation model has the ability to describe the HVDC system's dynamic change trends well under some special fault conditions.展开更多
Distributed power flow controller,which is among the most powerful distributed flexible transmission equipments,is still only in the stage of the oretical research and digital simulation.In order to promote the engine...Distributed power flow controller,which is among the most powerful distributed flexible transmission equipments,is still only in the stage of the oretical research and digital simulation.In order to promote the engineering demonstration of a distributed power flow controller,it is urgent to establish a digital/analog simulation platform that supports closed-loop real-time simulation of a distributed power flow controller.In this paper,the electromagnetic transient model of a distributed power flow controller is established on ADPSS(advanced digital power system simulator).The rapid control prototype realized by dSPACE is connected to ADPSS to form a digital/analog simulation platform for a distributed power flow controller.Through a voltage control and power flow control simulation of the test system with a distributed power flow controller,the correctness and effectiveness of the constructed simulation platform are verified,which provides a new way for the verification of the new theory of a distributed power flow controller.展开更多
目前在牵引供电系统对电力系统的影响研究中,大多只单一对牵引供电系统建立详细仿真模型,而电力系统侧则是采用简化后的电路代替,缺乏一种实际电力系统与牵引供电系统的联合仿真模型,对电力系统–牵引供电系统的相互作用与影响认识不足...目前在牵引供电系统对电力系统的影响研究中,大多只单一对牵引供电系统建立详细仿真模型,而电力系统侧则是采用简化后的电路代替,缺乏一种实际电力系统与牵引供电系统的联合仿真模型,对电力系统–牵引供电系统的相互作用与影响认识不足。文中在牵引供电系统电磁仿真模型的基础上,基于电力系统全数字仿真装置(advanced digital power system simulator,ADPSS)搭建出了牵引供电系统与实际电网系统的机电–电磁暂态混合仿真模型,并将混合仿真计算结果与典型值相比较,验证了混合仿真的正确性,并研究分析了牵引供电系统负荷特性、牵引供电系统对电力系统的影响。展开更多
基于模块化多电平换流器的背靠背柔性直流输电系统(back to back modular multilevel converter based high voltage directcurrent,Back-to-BackMMC-HVDC)可实现区域电网的异步互联,提高电网可靠性。为更好地研究背靠背MMCHVDC接入后...基于模块化多电平换流器的背靠背柔性直流输电系统(back to back modular multilevel converter based high voltage directcurrent,Back-to-BackMMC-HVDC)可实现区域电网的异步互联,提高电网可靠性。为更好地研究背靠背MMCHVDC接入后的交直流系统互耦特性,需建立兼顾区域电网仿真效率与精确模拟MMC-HVDC系统动态特性的交直流混合模型。研究了MMC-HVDC运行原理与控制策略,基于电力系统全数字仿真装置(advanceddigitalpowersystem simulator,ADPSS)搭建含背靠背MMC-HVDC系统的交直流电网机电-电磁混合模型。通过仿真对比,验证了上述MMC-HVDC电磁暂态模型及其控制系统的正确性;基于混合模型进行了交直流电网机电-电磁混合仿真研究,并与对交流大电网进行等值简化后的纯电磁模型进行对比分析。结果表明,与将交流电网等效为理想电压源加等值阻抗的纯电磁暂态模型相比,混合仿真模型可更好地体现交流系统特性,更贴近实际工程,为研究交直流互联电网提供了较好的参考。展开更多
定步长仿真算法只能在整仿真步长时刻改变开关状态,这将导致开关动作延时并造成电压电流波形出现非特征谐波。提出了一种适用于实时数字仿真的开关脉冲触发补偿算法,该算法通过在开关动作时在开关两端节点间并联一个补偿电流源,解决了...定步长仿真算法只能在整仿真步长时刻改变开关状态,这将导致开关动作延时并造成电压电流波形出现非特征谐波。提出了一种适用于实时数字仿真的开关脉冲触发补偿算法,该算法通过在开关动作时在开关两端节点间并联一个补偿电流源,解决了定步长仿真中开关动作时刻与仿真步长不一致的问题。最后,将开关脉冲触发补偿算法应用于单相半波可控整流电路、可控串补(thyristor controlled seriescompensator,TCSC)和静止同步补偿器(static synchronouscompensator,STATCOM)的仿真结果表明,算法是有效、可行的,提高了电力系统全数字实时仿真装置(advanceddigital power system simulator,ADPSS)对电力电子电路模拟的准确性。展开更多
基金supported by the General Program of Chinese Postdoctoral Science Foundation under Grant No.2012M511595
文摘In order to effectively imitate the dynamic operation characteristics of the HVDC (high voltage direct current) power transmission system at a real ±500kV HVDC transmission project, the electromechanical-electromagnetic transient hybrid simulation was carried out based on advanced digital power system simulator (ADPSS). In the simulation analysis, the built hybrid model's dynamic response outputs under three different fault conditions are considered, and by comparing with the selected fault recording waveforms, the validities of the simulation waveforms are estimated qualitatively. It can be ascertained that the hybrid simulation model has the ability to describe the HVDC system's dynamic change trends well under some special fault conditions.
基金the National Natural Science Foundation of China(51177114)the Major Projects of Technical Innovation in Huhei(2018AAA050,2019AAA016).
文摘Distributed power flow controller,which is among the most powerful distributed flexible transmission equipments,is still only in the stage of the oretical research and digital simulation.In order to promote the engineering demonstration of a distributed power flow controller,it is urgent to establish a digital/analog simulation platform that supports closed-loop real-time simulation of a distributed power flow controller.In this paper,the electromagnetic transient model of a distributed power flow controller is established on ADPSS(advanced digital power system simulator).The rapid control prototype realized by dSPACE is connected to ADPSS to form a digital/analog simulation platform for a distributed power flow controller.Through a voltage control and power flow control simulation of the test system with a distributed power flow controller,the correctness and effectiveness of the constructed simulation platform are verified,which provides a new way for the verification of the new theory of a distributed power flow controller.
文摘目前在牵引供电系统对电力系统的影响研究中,大多只单一对牵引供电系统建立详细仿真模型,而电力系统侧则是采用简化后的电路代替,缺乏一种实际电力系统与牵引供电系统的联合仿真模型,对电力系统–牵引供电系统的相互作用与影响认识不足。文中在牵引供电系统电磁仿真模型的基础上,基于电力系统全数字仿真装置(advanced digital power system simulator,ADPSS)搭建出了牵引供电系统与实际电网系统的机电–电磁暂态混合仿真模型,并将混合仿真计算结果与典型值相比较,验证了混合仿真的正确性,并研究分析了牵引供电系统负荷特性、牵引供电系统对电力系统的影响。
文摘基于模块化多电平换流器的背靠背柔性直流输电系统(back to back modular multilevel converter based high voltage directcurrent,Back-to-BackMMC-HVDC)可实现区域电网的异步互联,提高电网可靠性。为更好地研究背靠背MMCHVDC接入后的交直流系统互耦特性,需建立兼顾区域电网仿真效率与精确模拟MMC-HVDC系统动态特性的交直流混合模型。研究了MMC-HVDC运行原理与控制策略,基于电力系统全数字仿真装置(advanceddigitalpowersystem simulator,ADPSS)搭建含背靠背MMC-HVDC系统的交直流电网机电-电磁混合模型。通过仿真对比,验证了上述MMC-HVDC电磁暂态模型及其控制系统的正确性;基于混合模型进行了交直流电网机电-电磁混合仿真研究,并与对交流大电网进行等值简化后的纯电磁模型进行对比分析。结果表明,与将交流电网等效为理想电压源加等值阻抗的纯电磁暂态模型相比,混合仿真模型可更好地体现交流系统特性,更贴近实际工程,为研究交直流互联电网提供了较好的参考。
文摘定步长仿真算法只能在整仿真步长时刻改变开关状态,这将导致开关动作延时并造成电压电流波形出现非特征谐波。提出了一种适用于实时数字仿真的开关脉冲触发补偿算法,该算法通过在开关动作时在开关两端节点间并联一个补偿电流源,解决了定步长仿真中开关动作时刻与仿真步长不一致的问题。最后,将开关脉冲触发补偿算法应用于单相半波可控整流电路、可控串补(thyristor controlled seriescompensator,TCSC)和静止同步补偿器(static synchronouscompensator,STATCOM)的仿真结果表明,算法是有效、可行的,提高了电力系统全数字实时仿真装置(advanceddigital power system simulator,ADPSS)对电力电子电路模拟的准确性。