在“沙戈荒”地区风电经电网换相高压直流输电(line-commutated-converter based high voltage direct current,LCC-HVDC)外送系统中,采用基于匹配控制的构网型直驱风机(matching control permanent magnet synchronous generator,MC-PM...在“沙戈荒”地区风电经电网换相高压直流输电(line-commutated-converter based high voltage direct current,LCC-HVDC)外送系统中,采用基于匹配控制的构网型直驱风机(matching control permanent magnet synchronous generator,MC-PMSG)可以提升送端电网的稳定性。然而,当MC-PMSG位于LCC-HVDC整流站近区时,系统的次同步振荡(sub-synchronous oscillation,SSO)特性尚未明确。针对上述问题,该文采用模块化建模法建立MC-PMSG经LCC-HVDC送出系统的小信号模型,通过特征值法研究MC-PMSG与LCC-HVDC对系统各SSO模态的参与情况与系统运行方式变化对次同步振荡阻尼特性的影响,通过阻尼重构法分析LCC-HVDC并网对系统振荡风险的影响机理。研究结果表明,系统存在匹配控制型风机主导、LCC-HVDC参与的SSO模态,MC-PMSG与LCC-HVDC间的次同步交互作用为SSO提供负阻尼;当混合型风电场中的MC-PMSG占比增大、MC-PMSG风电场容量增大或短路比减小、LCC-HVDC定电流控制器的比例系数增大、风机网侧换流控制器外环积分系数减小、直流电容增大时,SSO阻尼增大。通过PSCAD/EMTDC电磁暂态仿真证明理论分析结果的有效性。展开更多
A hybrid of line commutated converters(LCCs)and modular multi-level converters(MMCs)can provide the advantages of both the technologies.However,the commutation failure still exists if the LCC operates as an inverter i...A hybrid of line commutated converters(LCCs)and modular multi-level converters(MMCs)can provide the advantages of both the technologies.However,the commutation failure still exists if the LCC operates as an inverter in a hybrid LCC/MMC system.In this paper,the system behavior during a commutation failure is investigated.Both halfbridge and full-bridge MMCs are considered.Control strategies are examined through simulations conducted in PSCAD/EMTDC.Additionally,commutation failure protection strategies for multi-terminal hybrid LCC/MMC systems with AC and DC circuit breakers are studied.This paper can contribute to the protection design of future hybrid LCC/MMC systems against commutation failures.展开更多
该文基于系列文章1建立的电网换相换流器型高压直流(line commutated converter-based high voltage direct current,LCC-HVDC)阻抗模型,开展新能源基地经LCC-HVDC送出系统阻抗特性和振荡机理分析。首先,研究LCC-HVDC送端交流端口阻抗...该文基于系列文章1建立的电网换相换流器型高压直流(line commutated converter-based high voltage direct current,LCC-HVDC)阻抗模型,开展新能源基地经LCC-HVDC送出系统阻抗特性和振荡机理分析。首先,研究LCC-HVDC送端交流端口阻抗与阀本体交流阻抗、交流滤波器阻抗间的构成关系,分析直流线路、受端换流站、受端电网强度对送端换流站阀本体交流阻抗的主导影响;然后,研究送端换流站直流电流环对阀本体交流阻抗的重叠效应,分析送端换流站交流端口阻抗次/超同步频段负阻尼特性形成机理,并论述受端换流站和受端电网强度对送端交流端口阻抗特性的交互影响;接下来,建立新能源基地经LCC-HVDC送出系统等值模型,研究送端系统振荡边界条件,阐明LCC-HVDC对新能源并网点阻抗特性影响的变化规律,揭示直驱风机(permanent magnet synchronous generator,PMSG)、双馈风机(doubly-fed induction generator,DFIG)、光伏(photovoltaic,PV)不同类型新能源基地经LCC-HVDC送出系统次/超同步振荡机理;最后,不同类型新能源基地经LCC-HVDC送出系统仿真结果验证了该文提出的次/超同步振荡机理的正确性和通用性。展开更多
为研究分网接入方式下电网换相换流器高压直流输电(line commutated converter based high voltage direct current,LCC-HVDC)系统的交互振荡模式及阻尼特征,基于系统的状态空间模型及系列文章(一)建立的运动方程模型,提取了表征逆变侧...为研究分网接入方式下电网换相换流器高压直流输电(line commutated converter based high voltage direct current,LCC-HVDC)系统的交互振荡模式及阻尼特征,基于系统的状态空间模型及系列文章(一)建立的运动方程模型,提取了表征逆变侧电气与控制环节强耦合特性的多个弱阻尼交互振荡模式,研究了不同短路比工况下交互振荡模式的变化特征。在此基础上,通过复转矩系数法量化评估了整流侧/逆变侧内部自稳性路径及双极交互作用致稳性路径对主导交互振荡模式阻尼特性的贡献度。结果表明:1)不同短路比工况下交互振荡模式的阻尼比会进行重新分配;2)当逆变侧正负极短路比相差较大时,双极交互作用较弱,正负极系统的稳定性由2个交互振荡模式各自主导,且稳定性特征有所差异;3)当逆变侧正负极短路比相近时,双极间动态交互加强,交互振荡模式会同时主导参与系统两极的稳定性,正负极稳定性特征相似。展开更多
与常规直流相比,永富直流逆变站存在功率全送和功率分送运行方式,而其处于分网接入方式时电网换相换流器高压直流输电(line commutated converter based high voltage directcurrent,LCC-HVDC)系统的交互振荡模式及特征尚不明确。针对...与常规直流相比,永富直流逆变站存在功率全送和功率分送运行方式,而其处于分网接入方式时电网换相换流器高压直流输电(line commutated converter based high voltage directcurrent,LCC-HVDC)系统的交互振荡模式及特征尚不明确。针对这一特殊运行方式,采用模块化建模的思路建立可以反映系统电气/控制回路间交互耦合路径的运动方程模型。在此基础上,依据系统整流侧-逆变侧、正极-负极间的交互耦合路径分解得到影响系统主导模式稳定性的3条扰动传递路径,即整流侧内部自稳性路径、逆变侧内部自稳性路径、双极交互作用致稳性路径。最后,设置不同工况下的案例,量化评估不同作用路径提供的阻尼大小,并通过仿真验证运动方程模型及扰动传递路径分析结果的正确性,为后续研究分网接入方式下LCC-HVDC系统交互振荡模式的阻尼特征提供模型基础。展开更多
To reduce the probability of commutation failure(CF)of a line commutated converter based high-voltage direct current(LCC-HVDC)transmission,a DC chopper topology composed of power consumption sub-modules based on thyri...To reduce the probability of commutation failure(CF)of a line commutated converter based high-voltage direct current(LCC-HVDC)transmission,a DC chopper topology composed of power consumption sub-modules based on thyristor full-bridge module(TFB-PCSM)is proposed.Firstly,the mechanism of the proposed topology to mitigate CF is analyzed,and the working modes of TFB-PCSM in different operation states are introduced.Secondly,the coordinated control strategy between the proposed DC chopper and LCC-HVDC is designed,and the voltage-current stresses of the TFB-PCSMs are investigated.Finally,the ability to mitigate the CF issues and the fault recovery performance of LCC-HVDC system are studied in PSCAD/EMTDC.The results show that the probability of CF of LCC-HVDC is significantly reduced,and the performances of fault recovery are effectively improved by the proposed DC chopper.展开更多
电网换相换流器高压直流输电系统(Line Commutated Converter based High Voltage Direct Current,LCC-HVDC)在功率传输特性、线路故障时的自防护能力、过负荷能力等方面均优于交流输电,但却无法向弱交流系统和无源网络供电。电压源换...电网换相换流器高压直流输电系统(Line Commutated Converter based High Voltage Direct Current,LCC-HVDC)在功率传输特性、线路故障时的自防护能力、过负荷能力等方面均优于交流输电,但却无法向弱交流系统和无源网络供电。电压源换流器高压直流输电系统(Voltage Source Converter based HVDC,VSC-HVDC)可实现向无源网络供电的目的,但由于电力电子技术的局限性,VSC-HVDC系统投资成本过高。结合两者的优势,提出了一种新型混合高压直流输电系统(Hybrid High Voltage Direct Current,H-HVDC)。该系统的整流侧为两个6脉动LCC接一交流网络,逆变侧为三相二电平VSC接无源网络。在此基础上,对该H-HVDC的稳态数学模型、启动特性、稳态特性与暂态特性、单极闭锁进行了研究。仿真结果表明,该H-HVDC系统能实现向无源网络供电,且具有较高的稳定性,为混合直流的进一步发展提供了理论基础。展开更多
This paper proposes a novel AC filter system for a line commutated converter high voltage DC(LCC-HVDC)transmission system.Through the coordination of the hybrid active power filters(APF)and the existing reactive compe...This paper proposes a novel AC filter system for a line commutated converter high voltage DC(LCC-HVDC)transmission system.Through the coordination of the hybrid active power filters(APF)and the existing reactive compensation devices,the proposed filter system can not only enhance the suppression performance for LCC-HVDC harmonics,but also optimize the AC yard layout with reduced reactive power subbanks,reducing the cost of HVDC projects.The novel filter system adopts a serial passive resonance topology obtained by careful comparison of different APFs.A proper control scheme is then designed integrating the control strategy of the APF and impedance characteristics of the HVDC system,which is able to realize harmonic suppression and dynamic reactive power support simultaneously.In addition,a novel self-adaption digital low-pass filter algorithm is presented,which is used in the APF harmonic detecting step,enhancing both high precision and fast dynamic response.On the basis of a real HVDC project,the advantages of proposed filter system in harmonic suppression,reactive power regulation,and sub-banks reduction are simulated and demonstrated.展开更多
该文建立含静止同步补偿器(static synchronous compensator,STATCOM)的电网换相换流器高压直流输电(line commutated converter based high voltage direct current,LCC-HVDC)系统的小信号模型,通过与详细电磁暂态模型的对比,对其...该文建立含静止同步补偿器(static synchronous compensator,STATCOM)的电网换相换流器高压直流输电(line commutated converter based high voltage direct current,LCC-HVDC)系统的小信号模型,通过与详细电磁暂态模型的对比,对其准确性进行验证。基于该模型,研究锁相环(phase-locked loop,PLL)、LCC-HVDC与STATCOM控制系统参数对整个系统的小信号稳定性与动态性能的影响,并得到不同控制系统参数的可行域。最后分析锁相环(phaselocked loop,PLL)、LCC-HVDC与STATCOM控制系统之间的相互耦合作用,结果表明该耦合作用使得不同控制系统的参数可行域相互约束,为系统设计和参数选择提供有价值的参考。展开更多
研究应用于电网换相高压直流输电系统(line commutate converter based high voltage direct current,LCCHVDC)弱受端的链式静止同步补偿器(static synchronous compensator,STATCOM)控制策略,提高其暂态控制性能。首先,对基于比例...研究应用于电网换相高压直流输电系统(line commutate converter based high voltage direct current,LCCHVDC)弱受端的链式静止同步补偿器(static synchronous compensator,STATCOM)控制策略,提高其暂态控制性能。首先,对基于比例谐振控制器的分相瞬时电流控制策略进行了论述;其次,将专用降压变的短路阻抗等效至STATCOM主回路,则STATCOM等效直挂在虚拟35kV交流系统,提出虚拟35kV电压瞬时值前馈及其与幅值前馈的在线切换方法、以虚拟35kV电压为控制目标的暂态分相控制策略;最后,将所提出的控制策略运用在国内首套应用于LCCHVDC弱受端换流站的STATCOM中,仿真结果、RTDS试验和工程现场试验验证了其合理性与有效性。展开更多
通过在电网换相换流器高压直流输电(line commutated converter based high voltage direct current,LCC-HVDC)逆变侧交流母线装设静止同步补偿器(static synchronous compensator,STATCOM),来达到抑制换相失败的目的。然而研究发现...通过在电网换相换流器高压直流输电(line commutated converter based high voltage direct current,LCC-HVDC)逆变侧交流母线装设静止同步补偿器(static synchronous compensator,STATCOM),来达到抑制换相失败的目的。然而研究发现,在弱交流系统工况下,STATCOM的控制系统(特别是交流电压控制外环)与LCC锁相环之间存在相互作用,会对后者的稳定可行域造成不利影响,进而可能引发整个混合系统的小干扰失稳现象。针对此现象,该文提出一种适用于弱交流系统下含STATCOM的LCC-HVDC系统的新型附加阻尼协调控制(supplementarydampingcoordination control,SDCC),该方法基于LCC锁相环输出频率信息,引入阻尼系数以附加分量形式反馈到STATCOM定交流电压控制器外环输入中。基于Matlab的特征根理论分析及基于PSCAD/EMTDC的详细电磁暂态仿真结果表明,提出的SDCC控制可以有效抑制含STATCOM的LCC-HVDC系统中LCC锁相环增益过大引起的系统小干扰失稳现象,从而提高系统的稳定裕度。展开更多
文摘在“沙戈荒”地区风电经电网换相高压直流输电(line-commutated-converter based high voltage direct current,LCC-HVDC)外送系统中,采用基于匹配控制的构网型直驱风机(matching control permanent magnet synchronous generator,MC-PMSG)可以提升送端电网的稳定性。然而,当MC-PMSG位于LCC-HVDC整流站近区时,系统的次同步振荡(sub-synchronous oscillation,SSO)特性尚未明确。针对上述问题,该文采用模块化建模法建立MC-PMSG经LCC-HVDC送出系统的小信号模型,通过特征值法研究MC-PMSG与LCC-HVDC对系统各SSO模态的参与情况与系统运行方式变化对次同步振荡阻尼特性的影响,通过阻尼重构法分析LCC-HVDC并网对系统振荡风险的影响机理。研究结果表明,系统存在匹配控制型风机主导、LCC-HVDC参与的SSO模态,MC-PMSG与LCC-HVDC间的次同步交互作用为SSO提供负阻尼;当混合型风电场中的MC-PMSG占比增大、MC-PMSG风电场容量增大或短路比减小、LCC-HVDC定电流控制器的比例系数增大、风机网侧换流控制器外环积分系数减小、直流电容增大时,SSO阻尼增大。通过PSCAD/EMTDC电磁暂态仿真证明理论分析结果的有效性。
基金supported by the Science and Technology Project of the State Grid Corporation of China,HVDC Systems/Grids for Transnational Interconnections(Project number:SGTYHT/16-JS-198).
文摘A hybrid of line commutated converters(LCCs)and modular multi-level converters(MMCs)can provide the advantages of both the technologies.However,the commutation failure still exists if the LCC operates as an inverter in a hybrid LCC/MMC system.In this paper,the system behavior during a commutation failure is investigated.Both halfbridge and full-bridge MMCs are considered.Control strategies are examined through simulations conducted in PSCAD/EMTDC.Additionally,commutation failure protection strategies for multi-terminal hybrid LCC/MMC systems with AC and DC circuit breakers are studied.This paper can contribute to the protection design of future hybrid LCC/MMC systems against commutation failures.
文摘该文基于系列文章1建立的电网换相换流器型高压直流(line commutated converter-based high voltage direct current,LCC-HVDC)阻抗模型,开展新能源基地经LCC-HVDC送出系统阻抗特性和振荡机理分析。首先,研究LCC-HVDC送端交流端口阻抗与阀本体交流阻抗、交流滤波器阻抗间的构成关系,分析直流线路、受端换流站、受端电网强度对送端换流站阀本体交流阻抗的主导影响;然后,研究送端换流站直流电流环对阀本体交流阻抗的重叠效应,分析送端换流站交流端口阻抗次/超同步频段负阻尼特性形成机理,并论述受端换流站和受端电网强度对送端交流端口阻抗特性的交互影响;接下来,建立新能源基地经LCC-HVDC送出系统等值模型,研究送端系统振荡边界条件,阐明LCC-HVDC对新能源并网点阻抗特性影响的变化规律,揭示直驱风机(permanent magnet synchronous generator,PMSG)、双馈风机(doubly-fed induction generator,DFIG)、光伏(photovoltaic,PV)不同类型新能源基地经LCC-HVDC送出系统次/超同步振荡机理;最后,不同类型新能源基地经LCC-HVDC送出系统仿真结果验证了该文提出的次/超同步振荡机理的正确性和通用性。
文摘为研究分网接入方式下电网换相换流器高压直流输电(line commutated converter based high voltage direct current,LCC-HVDC)系统的交互振荡模式及阻尼特征,基于系统的状态空间模型及系列文章(一)建立的运动方程模型,提取了表征逆变侧电气与控制环节强耦合特性的多个弱阻尼交互振荡模式,研究了不同短路比工况下交互振荡模式的变化特征。在此基础上,通过复转矩系数法量化评估了整流侧/逆变侧内部自稳性路径及双极交互作用致稳性路径对主导交互振荡模式阻尼特性的贡献度。结果表明:1)不同短路比工况下交互振荡模式的阻尼比会进行重新分配;2)当逆变侧正负极短路比相差较大时,双极交互作用较弱,正负极系统的稳定性由2个交互振荡模式各自主导,且稳定性特征有所差异;3)当逆变侧正负极短路比相近时,双极间动态交互加强,交互振荡模式会同时主导参与系统两极的稳定性,正负极稳定性特征相似。
文摘与常规直流相比,永富直流逆变站存在功率全送和功率分送运行方式,而其处于分网接入方式时电网换相换流器高压直流输电(line commutated converter based high voltage directcurrent,LCC-HVDC)系统的交互振荡模式及特征尚不明确。针对这一特殊运行方式,采用模块化建模的思路建立可以反映系统电气/控制回路间交互耦合路径的运动方程模型。在此基础上,依据系统整流侧-逆变侧、正极-负极间的交互耦合路径分解得到影响系统主导模式稳定性的3条扰动传递路径,即整流侧内部自稳性路径、逆变侧内部自稳性路径、双极交互作用致稳性路径。最后,设置不同工况下的案例,量化评估不同作用路径提供的阻尼大小,并通过仿真验证运动方程模型及扰动传递路径分析结果的正确性,为后续研究分网接入方式下LCC-HVDC系统交互振荡模式的阻尼特征提供模型基础。
基金supported by National Natural Science Foundation of China(No.51877077)。
文摘To reduce the probability of commutation failure(CF)of a line commutated converter based high-voltage direct current(LCC-HVDC)transmission,a DC chopper topology composed of power consumption sub-modules based on thyristor full-bridge module(TFB-PCSM)is proposed.Firstly,the mechanism of the proposed topology to mitigate CF is analyzed,and the working modes of TFB-PCSM in different operation states are introduced.Secondly,the coordinated control strategy between the proposed DC chopper and LCC-HVDC is designed,and the voltage-current stresses of the TFB-PCSMs are investigated.Finally,the ability to mitigate the CF issues and the fault recovery performance of LCC-HVDC system are studied in PSCAD/EMTDC.The results show that the probability of CF of LCC-HVDC is significantly reduced,and the performances of fault recovery are effectively improved by the proposed DC chopper.
文摘电网换相换流器高压直流输电系统(Line Commutated Converter based High Voltage Direct Current,LCC-HVDC)在功率传输特性、线路故障时的自防护能力、过负荷能力等方面均优于交流输电,但却无法向弱交流系统和无源网络供电。电压源换流器高压直流输电系统(Voltage Source Converter based HVDC,VSC-HVDC)可实现向无源网络供电的目的,但由于电力电子技术的局限性,VSC-HVDC系统投资成本过高。结合两者的优势,提出了一种新型混合高压直流输电系统(Hybrid High Voltage Direct Current,H-HVDC)。该系统的整流侧为两个6脉动LCC接一交流网络,逆变侧为三相二电平VSC接无源网络。在此基础上,对该H-HVDC的稳态数学模型、启动特性、稳态特性与暂态特性、单极闭锁进行了研究。仿真结果表明,该H-HVDC系统能实现向无源网络供电,且具有较高的稳定性,为混合直流的进一步发展提供了理论基础。
基金This work was supported in part by the National Natural Science Foundation of China(U1766210,51625702)Science and Technology Program of SGCC.
文摘This paper proposes a novel AC filter system for a line commutated converter high voltage DC(LCC-HVDC)transmission system.Through the coordination of the hybrid active power filters(APF)and the existing reactive compensation devices,the proposed filter system can not only enhance the suppression performance for LCC-HVDC harmonics,but also optimize the AC yard layout with reduced reactive power subbanks,reducing the cost of HVDC projects.The novel filter system adopts a serial passive resonance topology obtained by careful comparison of different APFs.A proper control scheme is then designed integrating the control strategy of the APF and impedance characteristics of the HVDC system,which is able to realize harmonic suppression and dynamic reactive power support simultaneously.In addition,a novel self-adaption digital low-pass filter algorithm is presented,which is used in the APF harmonic detecting step,enhancing both high precision and fast dynamic response.On the basis of a real HVDC project,the advantages of proposed filter system in harmonic suppression,reactive power regulation,and sub-banks reduction are simulated and demonstrated.
文摘该文建立含静止同步补偿器(static synchronous compensator,STATCOM)的电网换相换流器高压直流输电(line commutated converter based high voltage direct current,LCC-HVDC)系统的小信号模型,通过与详细电磁暂态模型的对比,对其准确性进行验证。基于该模型,研究锁相环(phase-locked loop,PLL)、LCC-HVDC与STATCOM控制系统参数对整个系统的小信号稳定性与动态性能的影响,并得到不同控制系统参数的可行域。最后分析锁相环(phaselocked loop,PLL)、LCC-HVDC与STATCOM控制系统之间的相互耦合作用,结果表明该耦合作用使得不同控制系统的参数可行域相互约束,为系统设计和参数选择提供有价值的参考。
文摘研究应用于电网换相高压直流输电系统(line commutate converter based high voltage direct current,LCCHVDC)弱受端的链式静止同步补偿器(static synchronous compensator,STATCOM)控制策略,提高其暂态控制性能。首先,对基于比例谐振控制器的分相瞬时电流控制策略进行了论述;其次,将专用降压变的短路阻抗等效至STATCOM主回路,则STATCOM等效直挂在虚拟35kV交流系统,提出虚拟35kV电压瞬时值前馈及其与幅值前馈的在线切换方法、以虚拟35kV电压为控制目标的暂态分相控制策略;最后,将所提出的控制策略运用在国内首套应用于LCCHVDC弱受端换流站的STATCOM中,仿真结果、RTDS试验和工程现场试验验证了其合理性与有效性。
文摘通过在电网换相换流器高压直流输电(line commutated converter based high voltage direct current,LCC-HVDC)逆变侧交流母线装设静止同步补偿器(static synchronous compensator,STATCOM),来达到抑制换相失败的目的。然而研究发现,在弱交流系统工况下,STATCOM的控制系统(特别是交流电压控制外环)与LCC锁相环之间存在相互作用,会对后者的稳定可行域造成不利影响,进而可能引发整个混合系统的小干扰失稳现象。针对此现象,该文提出一种适用于弱交流系统下含STATCOM的LCC-HVDC系统的新型附加阻尼协调控制(supplementarydampingcoordination control,SDCC),该方法基于LCC锁相环输出频率信息,引入阻尼系数以附加分量形式反馈到STATCOM定交流电压控制器外环输入中。基于Matlab的特征根理论分析及基于PSCAD/EMTDC的详细电磁暂态仿真结果表明,提出的SDCC控制可以有效抑制含STATCOM的LCC-HVDC系统中LCC锁相环增益过大引起的系统小干扰失稳现象,从而提高系统的稳定裕度。