In this paper, the Authors present the designing of power system stabilizer (PSS) and static var compensator (SVC) based on chaos, particle swarm optimization (PSO) and shuffled frog leaping (SFL) Algorithms has been ...In this paper, the Authors present the designing of power system stabilizer (PSS) and static var compensator (SVC) based on chaos, particle swarm optimization (PSO) and shuffled frog leaping (SFL) Algorithms has been presented to improve the power system stability. Single machine infinite bus (SMIB) system with SVC located at the terminal of generator has been considered to evaluate the proposed SVC and PSS controllers. The coefficients of PSS and SVC controller have been optimized by Chaos, PSO and SFL algorithms. Fi-nally the system with proposed controllers is simulated for the special disturbance in input power of genera-tor, and then the dynamic responses of generator have been presented. The simulation results show that the system composed with recommended controller has outstanding operation in fast damping of oscillations of power system and describes an application of Chaos, PSO and SFL algorithms to the problem of designing a Lead-Lag controller used in PSS and SVC in power system.展开更多
为提高提高多机电力系统的暂态稳定性,该文首先建立了静止无功补偿器(static var compensator,SVC)系统的一个含有时变参数不确定性的二阶非线性动态模型,然后在SVC动态模型的基础上,利用自适应控制技术和鲁棒控制技术设计了SVC系统的...为提高提高多机电力系统的暂态稳定性,该文首先建立了静止无功补偿器(static var compensator,SVC)系统的一个含有时变参数不确定性的二阶非线性动态模型,然后在SVC动态模型的基础上,利用自适应控制技术和鲁棒控制技术设计了SVC系统的控制器。为了验证所设计的控制器的有效性,以一个经典的三机九母线电力系统作为测试系统,对鲁棒自适应SVC控制器与PID SVC控制器和反馈线性化SVC控制器分别进行了比较研究。仿真结果表明,与PID SVC控制器和反馈线性化SVC控制器相比,所提出的鲁棒自适应SVC控制器具有良好的性能。展开更多
在电力系统仿真软件DIgSILENT/PowerFactory中建立了静止无功补偿器(static var compensator,SVC)补偿型定速风电机组的模型,分析了其稳态和暂态特性以及由SVC补偿型风电机组组成的风电场对电网的影响,分别采用上述风电机组模型和用电...在电力系统仿真软件DIgSILENT/PowerFactory中建立了静止无功补偿器(static var compensator,SVC)补偿型定速风电机组的模型,分析了其稳态和暂态特性以及由SVC补偿型风电机组组成的风电场对电网的影响,分别采用上述风电机组模型和用电容器组进行补偿的普通定速风电机组模型进行仿真实验,比较结果表明SVC补偿型风电机组具有快速调节无功功率的能力,当系统故障时,该风电机组可快速恢复系统电压,且风电机组启动过程对系统的冲击较小。展开更多
为配合青藏直流馈入,计划在夺底、乃琼和曲哥3站加装静止无功补充装置(static var compensator,SVC),以改善藏中电网电压稳定性,提升直流输送容量。为在实际工程实施前对SVC控制器的控制策略进行仿真校验及参数优化,搭建了基于HYPERSIM...为配合青藏直流馈入,计划在夺底、乃琼和曲哥3站加装静止无功补充装置(static var compensator,SVC),以改善藏中电网电压稳定性,提升直流输送容量。为在实际工程实施前对SVC控制器的控制策略进行仿真校验及参数优化,搭建了基于HYPERSIM实时仿真装置的藏中电网数字仿真模型,并与实际的SVC控制器相连,对SVC控制策略进行了参数优化与实时仿真验证。对藏中电网夏季大方式和冬季大方式等进行仿真试验,相比未加装SVC时,加装SVC后藏中电网具有较好的故障电压恢复特性。仿真结果表明,SVC的控制策略对藏中电网电压稳定具有较好的控制特性。展开更多
文摘In this paper, the Authors present the designing of power system stabilizer (PSS) and static var compensator (SVC) based on chaos, particle swarm optimization (PSO) and shuffled frog leaping (SFL) Algorithms has been presented to improve the power system stability. Single machine infinite bus (SMIB) system with SVC located at the terminal of generator has been considered to evaluate the proposed SVC and PSS controllers. The coefficients of PSS and SVC controller have been optimized by Chaos, PSO and SFL algorithms. Fi-nally the system with proposed controllers is simulated for the special disturbance in input power of genera-tor, and then the dynamic responses of generator have been presented. The simulation results show that the system composed with recommended controller has outstanding operation in fast damping of oscillations of power system and describes an application of Chaos, PSO and SFL algorithms to the problem of designing a Lead-Lag controller used in PSS and SVC in power system.
文摘为提高提高多机电力系统的暂态稳定性,该文首先建立了静止无功补偿器(static var compensator,SVC)系统的一个含有时变参数不确定性的二阶非线性动态模型,然后在SVC动态模型的基础上,利用自适应控制技术和鲁棒控制技术设计了SVC系统的控制器。为了验证所设计的控制器的有效性,以一个经典的三机九母线电力系统作为测试系统,对鲁棒自适应SVC控制器与PID SVC控制器和反馈线性化SVC控制器分别进行了比较研究。仿真结果表明,与PID SVC控制器和反馈线性化SVC控制器相比,所提出的鲁棒自适应SVC控制器具有良好的性能。
基金中国风电项目(wind power research and training,CWPP)的资助
文摘在电力系统仿真软件DIgSILENT/PowerFactory中建立了静止无功补偿器(static var compensator,SVC)补偿型定速风电机组的模型,分析了其稳态和暂态特性以及由SVC补偿型风电机组组成的风电场对电网的影响,分别采用上述风电机组模型和用电容器组进行补偿的普通定速风电机组模型进行仿真实验,比较结果表明SVC补偿型风电机组具有快速调节无功功率的能力,当系统故障时,该风电机组可快速恢复系统电压,且风电机组启动过程对系统的冲击较小。
文摘为配合青藏直流馈入,计划在夺底、乃琼和曲哥3站加装静止无功补充装置(static var compensator,SVC),以改善藏中电网电压稳定性,提升直流输送容量。为在实际工程实施前对SVC控制器的控制策略进行仿真校验及参数优化,搭建了基于HYPERSIM实时仿真装置的藏中电网数字仿真模型,并与实际的SVC控制器相连,对SVC控制策略进行了参数优化与实时仿真验证。对藏中电网夏季大方式和冬季大方式等进行仿真试验,相比未加装SVC时,加装SVC后藏中电网具有较好的故障电压恢复特性。仿真结果表明,SVC的控制策略对藏中电网电压稳定具有较好的控制特性。