中国电机工程学报
中國電機工程學報
중국전궤공정학보
ZHONGGUO DIANJI GONGCHENG XUEBAO
2012年
1期
147-153
,共7页
特高压变压器保护%励磁涌流%参数辨识%等值回路平衡方程%等效励磁电感
特高壓變壓器保護%勵磁湧流%參數辨識%等值迴路平衡方程%等效勵磁電感
특고압변압기보호%려자용류%삼수변식%등치회로평형방정%등효려자전감
UHV transformer protection%inrush current%parameter identification%equivalent circuit equation%equivalent excitation inductance
谐波制动原理的变压器差动保护受谐波影响大,动作时间过长,难以满足特高压变压器保护的需求,针对此问题,提出了基于T型等效电路的特高压变压器保护方案。建立变压器T型等效电路模型,该模型不受变压器运行状态的影响,其参数能够唯一确定,并提出基于变压器等值回路平衡方程判据和等效励磁电感判据的保护方案。使用Matlab仿真工具,依据中国第一条特高压输电线路的系统参数搭建了特高压输电模型,分别仿真了特高压变压器空载投入、区外故障、区内故障和正常运行的各种工况,验证了所提出的保护方案在特高压输电系统中运用的可行性。该保护方案不受励磁涌流的影响、动作速度快、灵敏度高。
諧波製動原理的變壓器差動保護受諧波影響大,動作時間過長,難以滿足特高壓變壓器保護的需求,針對此問題,提齣瞭基于T型等效電路的特高壓變壓器保護方案。建立變壓器T型等效電路模型,該模型不受變壓器運行狀態的影響,其參數能夠唯一確定,併提齣基于變壓器等值迴路平衡方程判據和等效勵磁電感判據的保護方案。使用Matlab倣真工具,依據中國第一條特高壓輸電線路的繫統參數搭建瞭特高壓輸電模型,分彆倣真瞭特高壓變壓器空載投入、區外故障、區內故障和正常運行的各種工況,驗證瞭所提齣的保護方案在特高壓輸電繫統中運用的可行性。該保護方案不受勵磁湧流的影響、動作速度快、靈敏度高。
해파제동원리적변압기차동보호수해파영향대,동작시간과장,난이만족특고압변압기보호적수구,침대차문제,제출료기우T형등효전로적특고압변압기보호방안。건립변압기T형등효전로모형,해모형불수변압기운행상태적영향,기삼수능구유일학정,병제출기우변압기등치회로평형방정판거화등효려자전감판거적보호방안。사용Matlab방진공구,의거중국제일조특고압수전선로적계통삼수탑건료특고압수전모형,분별방진료특고압변압기공재투입、구외고장、구내고장화정상운행적각충공황,험증료소제출적보호방안재특고압수전계통중운용적가행성。해보호방안불수려자용류적영향、동작속도쾌、령민도고。
The performance of ultra-high voltage (UHV) transformer differential protection based on harmonic restraining method is seriously influenced by harmonics and its operation time is long. Aiming to solve this problem, this paper presented a novel protective scheme based on equivalent circuit model of transformer for UHV three-phase divided tank transformer. This paper established a T-type equivalent circuit model of transformer with its parameters calculated on-time. This model is not affected by transformer's operation states, and its parameters can be uniquely determined. It proposed a transformer protection criterion, which was based on the balanced transformer equivalent circuit model equation and the variation of instantaneously measured equivalent excitation inductance. With Matlab simulation tool, this paper established a model according to the parameters of the first UHV power transmission system in China, simulated such situations as energizing, external faults, internal faults, normal operation in the model, and testified the feasibility of the proposed transformer protection in UHV transmission systems. The performance of the protection scheme is not affected by inrush currents, and the protection can operate quickly and has high sensitivity.