电力系统保护与控制
電力繫統保護與控製
전력계통보호여공제
POWER SYSTM PROTECTION AND CONTROL
2015年
9期
89-94
,共6页
750 kV变压器%差动保护%后备保护%阻抗保护%整定计算
750 kV變壓器%差動保護%後備保護%阻抗保護%整定計算
750 kV변압기%차동보호%후비보호%조항보호%정정계산
750 kV transformer%differential protection%backup protection%impedance protection%setting calculation
750 kV电网作为西北地区主网架目前正处于快速发展期。结合750 kV变压器特点,分析了差动保护与各侧后备保护的配置原则及应注意的问题。考虑到750 kV变压器差动保护配置较为完备,明确变压器区内故障主要依靠差动保护切除,而后备保护主要用于反应本侧母线及线路出口故障。协调区外出口附近故障的灵敏性、快速性与选择性的矛盾是变压器后备保护整定计算的关键。在此基础上,提出了750 kV变压器保护的整定方案,并就阻抗保护适用性、差动保护完善、后备保护简化及变压器保护自动整定等问题进行了探讨。本方案已在西北750 kV变压器保护中获得应用。
750 kV電網作為西北地區主網架目前正處于快速髮展期。結閤750 kV變壓器特點,分析瞭差動保護與各側後備保護的配置原則及應註意的問題。攷慮到750 kV變壓器差動保護配置較為完備,明確變壓器區內故障主要依靠差動保護切除,而後備保護主要用于反應本側母線及線路齣口故障。協調區外齣口附近故障的靈敏性、快速性與選擇性的矛盾是變壓器後備保護整定計算的關鍵。在此基礎上,提齣瞭750 kV變壓器保護的整定方案,併就阻抗保護適用性、差動保護完善、後備保護簡化及變壓器保護自動整定等問題進行瞭探討。本方案已在西北750 kV變壓器保護中穫得應用。
750 kV전망작위서북지구주망가목전정처우쾌속발전기。결합750 kV변압기특점,분석료차동보호여각측후비보호적배치원칙급응주의적문제。고필도750 kV변압기차동보호배치교위완비,명학변압기구내고장주요의고차동보호절제,이후비보호주요용우반응본측모선급선로출구고장。협조구외출구부근고장적령민성、쾌속성여선택성적모순시변압기후비보호정정계산적관건。재차기출상,제출료750 kV변압기보호적정정방안,병취조항보호괄용성、차동보호완선、후비보호간화급변압기보호자동정정등문제진행료탐토。본방안이재서북750 kV변압기보호중획득응용。
750 kV grid as the main grid of Northwest China is now in rapid development period. On the basis of the characteristics of 750 kV transformer, the protection configuration and its related problems are analyzed. Considering that the differential protection of 750 kV transformer is quite perfect, the internal fault is mainly dependent on the differential protection to remove and the backup protection is primarily responsible for external faults at the bus and the local end of the adjacent lines. To meet the requirements for sensitivity and speed at external local faults without losing selectivity is the key issue for setting calculation in transformer backup protection. Based on the above analysis, the setting calculation method for 750 kV transformer protection is proposed and the applicability of impedance protection, improvement of differential protection, simplification of backup protection and automatic setting calculation of transformer protection are discussed as well. The scheme has been successfully applied to the 750 kV transformer protection in Northwest China.