The dynamic responses of generators when subjected to disturbances in an interconnected power system have become a major challenge to power utility companies due to increasing stress on the power network. Since the oc...The dynamic responses of generators when subjected to disturbances in an interconnected power system have become a major challenge to power utility companies due to increasing stress on the power network. Since the occurrence of a disturbance or fault cannot be completely avoided, hence, when it occurs, control measures need to be put in place to limit the fault current, which invariably limit the level of the disturbances. This paper explores the use of Superconductor Fault Current Limiter (SFCL) to improve the transient stability of the Nigeria 330 kV Transmission Network. During a large disturbance, the rotor angle of the generator is enhanced by connecting a Fault Current Limiter (FCL) which reduces the fault current and hence, increases transient stability of the power network. In this study, the most affected generator was taken into consideration in locating the SFCL. The result obtained reveals that the Swing Curve of the generator without FCL increases monotonically which indicates instability, while the Swing Curve of the System with FCL reaches steady state.展开更多
高温超导限流器(SFCL)是一种限制电网短路电流的有效措施,500 k V SFCL设备研制已有较大发展,对500k V SFCL接入电网系统的工程方案进行了研究,首先介绍了SFCL的工作原理,结合220 k V和35 k V SFCL投入电网的运行情况分析了SFCL的故障类...高温超导限流器(SFCL)是一种限制电网短路电流的有效措施,500 k V SFCL设备研制已有较大发展,对500k V SFCL接入电网系统的工程方案进行了研究,首先介绍了SFCL的工作原理,结合220 k V和35 k V SFCL投入电网的运行情况分析了SFCL的故障类型,接着针对500 k V SFCL的设备特点和电网要求,提出了一种主接线方案,该方案具有可靠性高,运行灵活,施工方便等特点,并给出了2个适用于不同工程环境情况下的平面布置方案。展开更多
装设故障限流装置是解决日益严重电网短路电流超标问题的有效技术措施之一,利用智能快速开关技术、短路电流过零点快速预测及精确相控开断技术研制一套330 k V开关型零损耗电网故障限流装置。该装置采用模块化设计方法,使正常运行时损...装设故障限流装置是解决日益严重电网短路电流超标问题的有效技术措施之一,利用智能快速开关技术、短路电流过零点快速预测及精确相控开断技术研制一套330 k V开关型零损耗电网故障限流装置。该装置采用模块化设计方法,使正常运行时损耗为零,且短路故障发生20 ms内,则可将80 k A及以下的短路电流限制在系统断路器的安全开断水平,从而实现任意深度的故障限流;装置成功用在330 k V线路上,通过带电、挂网运行和2次人工单相瞬时短路试验,验证装置满足安全性、有效性和可靠性的要求,同时结构简单合理,成本低廉且占地面积小。展开更多
装设故障限流装置是解决日益严重的电网短路电流超标问题的有效技术措施之一。基于智能快速断路器技术、短路电流过零点精确相控开断技术研制了一套330 k V开关型零损耗电网故障限流装置。该装置采用模块化设计方法,在正常运行时损耗为...装设故障限流装置是解决日益严重的电网短路电流超标问题的有效技术措施之一。基于智能快速断路器技术、短路电流过零点精确相控开断技术研制了一套330 k V开关型零损耗电网故障限流装置。该装置采用模块化设计方法,在正常运行时损耗为零,短路故障发生20 ms内,可将80 k A及以下的短路电流限制在系统断路器安全开断水平。装置成功在330 k V线路上通过了带电、挂网运行和2次人工单相瞬时短路试验,验证了装置满足安全性、有效性和可靠性的要求。展开更多
文摘The dynamic responses of generators when subjected to disturbances in an interconnected power system have become a major challenge to power utility companies due to increasing stress on the power network. Since the occurrence of a disturbance or fault cannot be completely avoided, hence, when it occurs, control measures need to be put in place to limit the fault current, which invariably limit the level of the disturbances. This paper explores the use of Superconductor Fault Current Limiter (SFCL) to improve the transient stability of the Nigeria 330 kV Transmission Network. During a large disturbance, the rotor angle of the generator is enhanced by connecting a Fault Current Limiter (FCL) which reduces the fault current and hence, increases transient stability of the power network. In this study, the most affected generator was taken into consideration in locating the SFCL. The result obtained reveals that the Swing Curve of the generator without FCL increases monotonically which indicates instability, while the Swing Curve of the System with FCL reaches steady state.
文摘高温超导限流器(SFCL)是一种限制电网短路电流的有效措施,500 k V SFCL设备研制已有较大发展,对500k V SFCL接入电网系统的工程方案进行了研究,首先介绍了SFCL的工作原理,结合220 k V和35 k V SFCL投入电网的运行情况分析了SFCL的故障类型,接着针对500 k V SFCL的设备特点和电网要求,提出了一种主接线方案,该方案具有可靠性高,运行灵活,施工方便等特点,并给出了2个适用于不同工程环境情况下的平面布置方案。
文摘装设故障限流装置是解决日益严重电网短路电流超标问题的有效技术措施之一,利用智能快速开关技术、短路电流过零点快速预测及精确相控开断技术研制一套330 k V开关型零损耗电网故障限流装置。该装置采用模块化设计方法,使正常运行时损耗为零,且短路故障发生20 ms内,则可将80 k A及以下的短路电流限制在系统断路器的安全开断水平,从而实现任意深度的故障限流;装置成功用在330 k V线路上,通过带电、挂网运行和2次人工单相瞬时短路试验,验证装置满足安全性、有效性和可靠性的要求,同时结构简单合理,成本低廉且占地面积小。
文摘装设故障限流装置是解决日益严重的电网短路电流超标问题的有效技术措施之一。基于智能快速断路器技术、短路电流过零点精确相控开断技术研制了一套330 k V开关型零损耗电网故障限流装置。该装置采用模块化设计方法,在正常运行时损耗为零,短路故障发生20 ms内,可将80 k A及以下的短路电流限制在系统断路器安全开断水平。装置成功在330 k V线路上通过了带电、挂网运行和2次人工单相瞬时短路试验,验证了装置满足安全性、有效性和可靠性的要求。