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Improvements of shunt tripping circuit in AAT at themode of grand operation

机译:大运行模式下AAT并联跳闸电路的改进

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With the State Grid Corporation of China (SGCC) constructing the management system of Intensive Management on Human Resource, Materials and Finance and Grand Planning, Marketing, Production, Operation and Construction, the grid will be managed with grand operation mode eventually. All levels of power transmission and transformation equipment's operation monitoring and dispatching operation will be in a highly integrated in this mode, which can realize dispatching and control together. In this new management mode the operation of remote control will appear especially important, and it can improve the power grid fault handling efficiency and power grid emergency load transfering speed. With the fault time shortened, it can improve the stability of power grid operation. At the same time, the primary and secondary equipment including automatic device should meet the requirements of the remote control. Automatic bus transfer equipment (AAT) used in a wide range of power system, When the working power is disconnected due to fault, backup power can input to work automatically and quickly. The shunt tripping circuit is installed in AAT for three main transformer substation with four segments. After the AAT triggers, it can achieve load balancing between two transformers with the tripping function. The existing shunt-tripping-circuit has defects in the mode of grand operation. When the AAT isn't disabled, the operation of remote control cannot be used. So it does not meet the mode of grand operation. Therefore it need to improve and perfect the shunt tripping circuit. In this paper, the principles of AAT in a 35 kV substation are analyzed in Shanghai, and the existing defects in shunt tripping circuit are elaborated. Two kinds of improvements are presented at length, which can perfectly solves the problems with existing shunt tripping circuit in AAT.
机译:随着中国国家电网公司建设人力资源,物力和财务集约化管理体系以及大计划,营销,生产,运营和建设的管理体系,电网将最终以大运行模式进行管理。在这种模式下,各级输变电设备的运行监控与调度运行将高度集成,可以实现调度与控制的统一。在这种新的管理模式下,远程控制的操作显得尤为重要,它可以提高电网故障的处理效率和电网应急负荷的转移速度。通过缩短故障时间,可以提高电网运行的稳定性。同时,包括自动装置在内的主要和次要设备应满足遥控器的要求。自动总线转换设备(AAT)广泛用于电力系统中,当由于故障而断开工作电源时,备用电源可以输入以自动快速地工作。并联跳闸电路安装在AAT中,用于三个带四段的主变电站。 AAT触发后,它可以通过跳闸功能在两个变压器之间实现负载平衡。现有的分流电路在大工作模式下存在缺陷。如果未禁用AAT,则无法使用遥控器的操作。因此,它不符合大操作模式。因此,需要改进和完善并联跳闸电路。本文在上海对35 kV变电站的AAT原理进行了分析,并阐述了分励脱扣电路存在的缺陷。详尽地提出了两种改进,它们可以完美地解决AAT中现有的并联跳闸电路的问题。

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