针对当前电子式电流互感器工程应用中存在的问题,研制了一种基于低功率线圈的高压无源电子式电流互感器,并完成电子式电流互感器用低功率测量线圈、低功率保护线圈及远端模块等各部分设计与制造,弥补了传统罗氏线圈作为保护电流传感器...针对当前电子式电流互感器工程应用中存在的问题,研制了一种基于低功率线圈的高压无源电子式电流互感器,并完成电子式电流互感器用低功率测量线圈、低功率保护线圈及远端模块等各部分设计与制造,弥补了传统罗氏线圈作为保护电流传感器所存在的固有缺陷。同时,针对电子式电流互感器制造过程中各个环节存在的主要问题,介绍了设计思路和解决方案,并建立试验条件,对研制的1台110 k V样机进行了室温条件下的准确度进行了测试,试验验证了低功率线圈作为电子式电流互感器保护电流传感器的可行性。展开更多
This paper describes an asymmetric control method for the firing angle and a start/stop timing shift control of four thyristor converters called "Booster PS" to minimize the reactive power fluctuation during plasma ...This paper describes an asymmetric control method for the firing angle and a start/stop timing shift control of four thyristor converters called "Booster PS" to minimize the reactive power fluctuation during plasma initiation in JT-60SA. From the simulation using the "PSCAD/EMTDC" code, it is found that these control methods can drastically reduce the reac- tive power induced by the four units of the "Booster PS". In addition, the voltage fluctuation of the motor-generator connected to the "Booster PS" is expected to be suppressed. This can also contribute to achieve stable control of the JT-60SA magnet power supplies.展开更多
文摘针对当前电子式电流互感器工程应用中存在的问题,研制了一种基于低功率线圈的高压无源电子式电流互感器,并完成电子式电流互感器用低功率测量线圈、低功率保护线圈及远端模块等各部分设计与制造,弥补了传统罗氏线圈作为保护电流传感器所存在的固有缺陷。同时,针对电子式电流互感器制造过程中各个环节存在的主要问题,介绍了设计思路和解决方案,并建立试验条件,对研制的1台110 k V样机进行了室温条件下的准确度进行了测试,试验验证了低功率线圈作为电子式电流互感器保护电流传感器的可行性。
基金supported within the framework of the "Broader Approach Internationals Agreement"
文摘This paper describes an asymmetric control method for the firing angle and a start/stop timing shift control of four thyristor converters called "Booster PS" to minimize the reactive power fluctuation during plasma initiation in JT-60SA. From the simulation using the "PSCAD/EMTDC" code, it is found that these control methods can drastically reduce the reac- tive power induced by the four units of the "Booster PS". In addition, the voltage fluctuation of the motor-generator connected to the "Booster PS" is expected to be suppressed. This can also contribute to achieve stable control of the JT-60SA magnet power supplies.