To study the Very Fast Transient Over-voltage (VFTO) distribution in transformer windings in gas insulated substation (GIS), a systematic methodology based on S-parameters is presented for establishing high-frequency ...To study the Very Fast Transient Over-voltage (VFTO) distribution in transformer windings in gas insulated substation (GIS), a systematic methodology based on S-parameters is presented for establishing high-frequency model of transformer windings. Firstly, voltage transfer functions are derived from S-parameters which are calculated or measured from transformer windings. Secondly, voltage transfer functions are fitted with rational functions by the vector fitting method and then the rational transfer functions are order-reduced by optimal Pade-approximation algorithm. Lastly, the resultant voltage transfer functions are synthesized by network technology. Computational results are consistent with simulation results of Electromagnetic Transient Program (EMTP) and confirm the feasibility and validity of proposed methodology.展开更多
为准确获得淮南—上海1 000 k V同塔双回交流输电线路的工频序参数,采用基于全球定位系统的异频双端同步测量方法测量试验中各相导线首、末端电压与电流;提出了将所测电压与电流代入长线方程来求解异频下的工频序参数的计算方法,并与单...为准确获得淮南—上海1 000 k V同塔双回交流输电线路的工频序参数,采用基于全球定位系统的异频双端同步测量方法测量试验中各相导线首、末端电压与电流;提出了将所测电压与电流代入长线方程来求解异频下的工频序参数的计算方法,并与单端测量所得结果进行比较。结果表明,采用所提出的双端测量计算法能够获得准确的工频序参数,与采用分布参数模型的单端测量计算结果相比,其差异百分比≤1.52%;而与采用常规集中参数算法的单端测量法相比相差较大,其中零序电阻差异百分比可达16.48%,这是因为单端测量法不适用于长距离线路的参数计算。将上述双端测量计算法用于测量特高压同塔双回交流输电线路淮芜Ⅰ线与Ⅱ线的工频序参数,获得了准确的结果,为继电保护及短路电流计算等提供了数据基础。展开更多
基金the I mportant National Science Foundation of Hebei Province (E2006001036)Science and Tech-nology Project of Hebei Province (072156167)
文摘To study the Very Fast Transient Over-voltage (VFTO) distribution in transformer windings in gas insulated substation (GIS), a systematic methodology based on S-parameters is presented for establishing high-frequency model of transformer windings. Firstly, voltage transfer functions are derived from S-parameters which are calculated or measured from transformer windings. Secondly, voltage transfer functions are fitted with rational functions by the vector fitting method and then the rational transfer functions are order-reduced by optimal Pade-approximation algorithm. Lastly, the resultant voltage transfer functions are synthesized by network technology. Computational results are consistent with simulation results of Electromagnetic Transient Program (EMTP) and confirm the feasibility and validity of proposed methodology.
文摘为准确获得淮南—上海1 000 k V同塔双回交流输电线路的工频序参数,采用基于全球定位系统的异频双端同步测量方法测量试验中各相导线首、末端电压与电流;提出了将所测电压与电流代入长线方程来求解异频下的工频序参数的计算方法,并与单端测量所得结果进行比较。结果表明,采用所提出的双端测量计算法能够获得准确的工频序参数,与采用分布参数模型的单端测量计算结果相比,其差异百分比≤1.52%;而与采用常规集中参数算法的单端测量法相比相差较大,其中零序电阻差异百分比可达16.48%,这是因为单端测量法不适用于长距离线路的参数计算。将上述双端测量计算法用于测量特高压同塔双回交流输电线路淮芜Ⅰ线与Ⅱ线的工频序参数,获得了准确的结果,为继电保护及短路电流计算等提供了数据基础。