目前,在含统一潮流控制器(unified power flow controller,UPFC)的电网静态安全分析中,UPFC的控制目标有功功率、无功功率通常采用典型运行数据进行离线分析,控制目标值由试探法确定,计算效率低且和实际运行工况存在一定的差异。为弥补...目前,在含统一潮流控制器(unified power flow controller,UPFC)的电网静态安全分析中,UPFC的控制目标有功功率、无功功率通常采用典型运行数据进行离线分析,控制目标值由试探法确定,计算效率低且和实际运行工况存在一定的差异。为弥补现有控制策略整定方法的不足,文中提出了采用潮流转移分布因子的UPFC控制值整定方法,当电网发生N-1故障时,基于直流潮流法定量计算控制目标值,通过UPFC的潮流控制功能消除线路N-1过载,控制策略可根据能量管理系统(energy management system,EMS)数据在线刷新,可为电网调度提供辅助决策。算例仿真验证了文中算法的有效性和实用性。展开更多
In order to facilitate the electricity market operation and trade in the restructured environment, ample transmission capability should be provided to satisfy the demand of increasing power transactions. The conflict ...In order to facilitate the electricity market operation and trade in the restructured environment, ample transmission capability should be provided to satisfy the demand of increasing power transactions. The conflict of this requirement and the restrictions on the transmission expansion in the restructured electrical market has motivated the development of methodologies to enhance the Available Transfer Capability (ATC) of the existing transmission grids. The insertion of FACTS devices in electrical systems seems to be a promising strategy to enhance ATC. In this paper, the viability and technical merits of boosting ATC using Thyristor Controlled Series Compensator (TCSC) is being analyzed. The work has been carried out on IEEE 30 bus and IEEE 118 bus systems. Bilateral and multilateral transactions are considered. Particle Swarm Optimization (PSO) algorithm and Genetic Algorithm (GA) are employed to obtain the optimal settings of TCSC.展开更多
文摘In order to facilitate the electricity market operation and trade in the restructured environment, ample transmission capability should be provided to satisfy the demand of increasing power transactions. The conflict of this requirement and the restrictions on the transmission expansion in the restructured electrical market has motivated the development of methodologies to enhance the Available Transfer Capability (ATC) of the existing transmission grids. The insertion of FACTS devices in electrical systems seems to be a promising strategy to enhance ATC. In this paper, the viability and technical merits of boosting ATC using Thyristor Controlled Series Compensator (TCSC) is being analyzed. The work has been carried out on IEEE 30 bus and IEEE 118 bus systems. Bilateral and multilateral transactions are considered. Particle Swarm Optimization (PSO) algorithm and Genetic Algorithm (GA) are employed to obtain the optimal settings of TCSC.