Wind energy sources have different structures and functions from conventional power plants in the power system.These resources can affect the exchange of active and reactive power of the network.Therefore,power system...Wind energy sources have different structures and functions from conventional power plants in the power system.These resources can affect the exchange of active and reactive power of the network.Therefore,power system stability will be affected by the performance of wind power plants,especially in the event of a fault.In this paper,the improvement of the dynamic stability in power system equipped by wind farm is examined through the supplementary controller design in the high voltage direct current(HVDC)based on voltage source converter(VSC)transmission system.In this regard,impacts of the VSC HVDC system and wind farm on the improvement of system stability are considered.Also,an algorithm based on controllability(observability)concept is proposed to select most appropriate and effective coupling between inputs-outputs(IO)signals of system in different work conditions.The selected coupling is used to apply damping controller signal.Finally,a fractional order PID controller(FO-PID)based on exchange market algorithm(EMA)is designed as damping controller.The analysis of the results shows that the wind farm does not directly contribute to the improvement of the dynamic stability of power system.However,it can increase the controllability of the oscillatory mode and improve the performance of the supplementary controller.展开更多
The use of the supplementary controllers of a High Voltage Direct Current (HVDC) based on Voltage Source Converter (VSC) to damp low Frequency oscillations in a weakly connected system is surveyed. Also, singular valu...The use of the supplementary controllers of a High Voltage Direct Current (HVDC) based on Voltage Source Converter (VSC) to damp low Frequency oscillations in a weakly connected system is surveyed. Also, singular value decomposition (SVD)-based approach is used to analyze and assess the controllability of the poorly damped electromechanical modes by VSC-HVDC different control channels. The problem of supplementary damping controller based VSC-HVDC system is formulated as an optimization problem according to the time domain-based objective function which is solved using quantum-behaved particle swarm optimization (QPSO). Individual designs of the HVDC controllers using QPSO method are evaluated. The effectiveness of the proposed controllers on damping low frequency oscillations is checked through eigenvalue analysis and non-linear time simulation under various disturbance conditions over a wide range of loading.展开更多
针对柔性直流输电系统(voltage source converter based high voltage direct current transmission,VSC-HVDC)控制参数设计过程中存在的鲁棒性差、依赖已知电路参数、工程设计经验化等问题,提出一种基于马尔科夫转换场(Markov transiti...针对柔性直流输电系统(voltage source converter based high voltage direct current transmission,VSC-HVDC)控制参数设计过程中存在的鲁棒性差、依赖已知电路参数、工程设计经验化等问题,提出一种基于马尔科夫转换场(Markov transition field,MTF)与深度确定性策略梯度算法(deep deterministic policy gradient,DDPG)结合的鲁棒性强、不依赖电路参数特性以及可视化的VSC-HVDC控制参数优化设计方法。首先,采用马尔科夫转换场将电路功率、电压等一维时序波形数据转换为二维马尔科夫转换场域图像并使用马尔科夫转换场损失函数(Markov transition field loss,MTFL)判断二维转换域图的数据波动性;其次,将MTFL损失函数与DDPG算法相结合,综合利用MTFL损失函数对系统输出时序数据动态特性评价能力更强的优点和DDPG算法泛化性能优秀的特点,实现VSC-HVDC系统控制参数优化;最后,通过MATLAB模拟和实验结果验证该方法的有效性。展开更多
高比例、强随机性的可再生能源接入电网常导致交流传输线路过载,同时电力系统升级改造中构建的嵌入式柔性直流输电(voltage source converter based high voltage direct current, VSC-HVDC)系统的可控性没有得到充分利用。为此提出了...高比例、强随机性的可再生能源接入电网常导致交流传输线路过载,同时电力系统升级改造中构建的嵌入式柔性直流输电(voltage source converter based high voltage direct current, VSC-HVDC)系统的可控性没有得到充分利用。为此提出了一种基于功率灵敏度的嵌入式VSC-HVDC紧急控制方法,以快速缓解传输线路过载问题。首先,利用系统模型建立包含嵌入式VSC-HVDC的交流-直流功率灵敏度矩阵。然后,在实时运行中根据推导的灵敏度矩阵调整VSC-HVDC的有功功率,以应对特定的交流电网过载。在调整过程中,采用优化控制方法确保直流调整的总量最小化,同时交流线路有功功率保持在可接受的范围内。最后,通过修改的IEEE39节点系统仿真验证了该方法在多种故障工况下的有效性,可快速缓解交流线路过载并保证全网运行安全。展开更多
电压源型直流输电系统(voltage source converter based high voltage direct current,VSC-HVDC)并入弱交流电网可能产生振荡失稳现象,严重威胁电力系统安全稳定运行。VSC-HVDC结构日渐复杂,系统中同时存在多种控制策略,针对多端、多控...电压源型直流输电系统(voltage source converter based high voltage direct current,VSC-HVDC)并入弱交流电网可能产生振荡失稳现象,严重威胁电力系统安全稳定运行。VSC-HVDC结构日渐复杂,系统中同时存在多种控制策略,针对多端、多控制策略下VSC-HVDC的稳定特性还需深入研究。针对上述问题,以定直流电压/定功率混合控制的双受端VSC-HVDC系统为研究对象,探讨了系统在不同电网条件下的稳定特性。首先,分别推导了定直流电压/定功率控制策略VSC-HVDC子系统的数学模型和小信号模型,依据交直流拓扑关系构建混合控制策略下的全系统模型;其次,搭建双受端VSC-HVDC系统电磁暂态模型验证了不同运行工况下小信号模型的准确性;最后,分析了交流系统强度及联络线长度对双受端VSC-HVDC系统稳定性的影响,获得了定直流电压/定功率VSC-HVDC系统所能接受的最小电网强度,形成了系统安全稳定运行空间,并且基于MATLAB/Simulink时域仿真验证了理论分析的正确性。展开更多
针对大规模近海风电场地理分布上高度分散以及主要采用双馈式或直驱/半直驱式风电机组的特点,提出了相应的电压源型变流器的高压直流(voltage source converter based HVDC,VSC-HVDC)并网传输拓扑结构,并设计了相应的控制策略。为验证...针对大规模近海风电场地理分布上高度分散以及主要采用双馈式或直驱/半直驱式风电机组的特点,提出了相应的电压源型变流器的高压直流(voltage source converter based HVDC,VSC-HVDC)并网传输拓扑结构,并设计了相应的控制策略。为验证所提方案的可行性,利用Matlab/Simulink构建了一个近海风电场的5端口VSC-HVDC并网传输系统,并进行了系列仿真。仿真结果表明,所提VSC-HVDC方案可为大规模近海风电场的并网传输提供优化的解决方案。展开更多
小水电群富集的地区电网与主网的交流联络较弱时,容易引起系统低频振荡问题。用电压源换流器型直流输电系统(voltage source converter based high voltage direct current transmission,VSC-HVDC)异步联接小水电群电网与主网的方式可...小水电群富集的地区电网与主网的交流联络较弱时,容易引起系统低频振荡问题。用电压源换流器型直流输电系统(voltage source converter based high voltage direct current transmission,VSC-HVDC)异步联接小水电群电网与主网的方式可消除小水电群引起的低频振荡问题。但小水电群电网属于弱交流系统,此场景下VSC-HVDC有必要参与弱交流系统的电压和频率控制。该文设计了一种改善交流系统暂态稳定性的VSC-HVDC交流电压–频率协调控制策略,该策略的首要控制目标是保证VSC-HVDC设备的安全,第二控制目标是提高交流系统的电压稳定性,第三控制目标是提高交流系统的频率稳定性。设计的协调控制器结构能够确保暂态过程中多个控制目标按照优先级顺序实现。以云南电网的实例分析表明:VSC-HVDC异步联网方案能够有效提高系统的小扰动稳定性水平;VSC-HVDC交流电压–频率协调控制策略能够改善交流系统的暂态稳定性。展开更多
文摘Wind energy sources have different structures and functions from conventional power plants in the power system.These resources can affect the exchange of active and reactive power of the network.Therefore,power system stability will be affected by the performance of wind power plants,especially in the event of a fault.In this paper,the improvement of the dynamic stability in power system equipped by wind farm is examined through the supplementary controller design in the high voltage direct current(HVDC)based on voltage source converter(VSC)transmission system.In this regard,impacts of the VSC HVDC system and wind farm on the improvement of system stability are considered.Also,an algorithm based on controllability(observability)concept is proposed to select most appropriate and effective coupling between inputs-outputs(IO)signals of system in different work conditions.The selected coupling is used to apply damping controller signal.Finally,a fractional order PID controller(FO-PID)based on exchange market algorithm(EMA)is designed as damping controller.The analysis of the results shows that the wind farm does not directly contribute to the improvement of the dynamic stability of power system.However,it can increase the controllability of the oscillatory mode and improve the performance of the supplementary controller.
文摘The use of the supplementary controllers of a High Voltage Direct Current (HVDC) based on Voltage Source Converter (VSC) to damp low Frequency oscillations in a weakly connected system is surveyed. Also, singular value decomposition (SVD)-based approach is used to analyze and assess the controllability of the poorly damped electromechanical modes by VSC-HVDC different control channels. The problem of supplementary damping controller based VSC-HVDC system is formulated as an optimization problem according to the time domain-based objective function which is solved using quantum-behaved particle swarm optimization (QPSO). Individual designs of the HVDC controllers using QPSO method are evaluated. The effectiveness of the proposed controllers on damping low frequency oscillations is checked through eigenvalue analysis and non-linear time simulation under various disturbance conditions over a wide range of loading.
文摘针对柔性直流输电系统(voltage source converter based high voltage direct current transmission,VSC-HVDC)控制参数设计过程中存在的鲁棒性差、依赖已知电路参数、工程设计经验化等问题,提出一种基于马尔科夫转换场(Markov transition field,MTF)与深度确定性策略梯度算法(deep deterministic policy gradient,DDPG)结合的鲁棒性强、不依赖电路参数特性以及可视化的VSC-HVDC控制参数优化设计方法。首先,采用马尔科夫转换场将电路功率、电压等一维时序波形数据转换为二维马尔科夫转换场域图像并使用马尔科夫转换场损失函数(Markov transition field loss,MTFL)判断二维转换域图的数据波动性;其次,将MTFL损失函数与DDPG算法相结合,综合利用MTFL损失函数对系统输出时序数据动态特性评价能力更强的优点和DDPG算法泛化性能优秀的特点,实现VSC-HVDC系统控制参数优化;最后,通过MATLAB模拟和实验结果验证该方法的有效性。
文摘高比例、强随机性的可再生能源接入电网常导致交流传输线路过载,同时电力系统升级改造中构建的嵌入式柔性直流输电(voltage source converter based high voltage direct current, VSC-HVDC)系统的可控性没有得到充分利用。为此提出了一种基于功率灵敏度的嵌入式VSC-HVDC紧急控制方法,以快速缓解传输线路过载问题。首先,利用系统模型建立包含嵌入式VSC-HVDC的交流-直流功率灵敏度矩阵。然后,在实时运行中根据推导的灵敏度矩阵调整VSC-HVDC的有功功率,以应对特定的交流电网过载。在调整过程中,采用优化控制方法确保直流调整的总量最小化,同时交流线路有功功率保持在可接受的范围内。最后,通过修改的IEEE39节点系统仿真验证了该方法在多种故障工况下的有效性,可快速缓解交流线路过载并保证全网运行安全。
文摘电压源型直流输电系统(voltage source converter based high voltage direct current,VSC-HVDC)并入弱交流电网可能产生振荡失稳现象,严重威胁电力系统安全稳定运行。VSC-HVDC结构日渐复杂,系统中同时存在多种控制策略,针对多端、多控制策略下VSC-HVDC的稳定特性还需深入研究。针对上述问题,以定直流电压/定功率混合控制的双受端VSC-HVDC系统为研究对象,探讨了系统在不同电网条件下的稳定特性。首先,分别推导了定直流电压/定功率控制策略VSC-HVDC子系统的数学模型和小信号模型,依据交直流拓扑关系构建混合控制策略下的全系统模型;其次,搭建双受端VSC-HVDC系统电磁暂态模型验证了不同运行工况下小信号模型的准确性;最后,分析了交流系统强度及联络线长度对双受端VSC-HVDC系统稳定性的影响,获得了定直流电压/定功率VSC-HVDC系统所能接受的最小电网强度,形成了系统安全稳定运行空间,并且基于MATLAB/Simulink时域仿真验证了理论分析的正确性。
文摘针对大规模近海风电场地理分布上高度分散以及主要采用双馈式或直驱/半直驱式风电机组的特点,提出了相应的电压源型变流器的高压直流(voltage source converter based HVDC,VSC-HVDC)并网传输拓扑结构,并设计了相应的控制策略。为验证所提方案的可行性,利用Matlab/Simulink构建了一个近海风电场的5端口VSC-HVDC并网传输系统,并进行了系列仿真。仿真结果表明,所提VSC-HVDC方案可为大规模近海风电场的并网传输提供优化的解决方案。
文摘小水电群富集的地区电网与主网的交流联络较弱时,容易引起系统低频振荡问题。用电压源换流器型直流输电系统(voltage source converter based high voltage direct current transmission,VSC-HVDC)异步联接小水电群电网与主网的方式可消除小水电群引起的低频振荡问题。但小水电群电网属于弱交流系统,此场景下VSC-HVDC有必要参与弱交流系统的电压和频率控制。该文设计了一种改善交流系统暂态稳定性的VSC-HVDC交流电压–频率协调控制策略,该策略的首要控制目标是保证VSC-HVDC设备的安全,第二控制目标是提高交流系统的电压稳定性,第三控制目标是提高交流系统的频率稳定性。设计的协调控制器结构能够确保暂态过程中多个控制目标按照优先级顺序实现。以云南电网的实例分析表明:VSC-HVDC异步联网方案能够有效提高系统的小扰动稳定性水平;VSC-HVDC交流电压–频率协调控制策略能够改善交流系统的暂态稳定性。