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
2期
76-83
,共8页
张苏敏%古斌%曹良丰%朱烈锋
張囌敏%古斌%曹良豐%硃烈鋒
장소민%고빈%조량봉%주렬봉
安全性%分布参数模型%双回输电线路%相差保护%故障分量网络
安全性%分佈參數模型%雙迴輸電線路%相差保護%故障分量網絡
안전성%분포삼수모형%쌍회수전선로%상차보호%고장분량망락
security%distributed parameters model%double-circuit transmission lines%phase comparison protection%fault component network
相差纵联保护具有区别电力系统振荡与短路的优越性能,但传统相差保护在内部故障时灵敏度易受负荷电流和过渡电阻的影响,且应用于双回线或环网时其性能受线路分布电容影响,在外部故障时保护可能误动。基于无损线路分布参数模型及故障分量保护原理,提出了新型相差保护原理。理论上保护性能不受负荷电流和过渡电阻的影响,且完全杜绝了外部故障时保护误动的可能性,极大地提高了保护安全性,且各种内部故障时可靠动作。理论分析表明所提原理适用于各种故障类型,其性能不受故障电阻及系统运行状态等的影响。大量的仿真也证明了该原理的正确性。
相差縱聯保護具有區彆電力繫統振盪與短路的優越性能,但傳統相差保護在內部故障時靈敏度易受負荷電流和過渡電阻的影響,且應用于雙迴線或環網時其性能受線路分佈電容影響,在外部故障時保護可能誤動。基于無損線路分佈參數模型及故障分量保護原理,提齣瞭新型相差保護原理。理論上保護性能不受負荷電流和過渡電阻的影響,且完全杜絕瞭外部故障時保護誤動的可能性,極大地提高瞭保護安全性,且各種內部故障時可靠動作。理論分析錶明所提原理適用于各種故障類型,其性能不受故障電阻及繫統運行狀態等的影響。大量的倣真也證明瞭該原理的正確性。
상차종련보호구유구별전력계통진탕여단로적우월성능,단전통상차보호재내부고장시령민도역수부하전류화과도전조적영향,차응용우쌍회선혹배망시기성능수선로분포전용영향,재외부고장시보호가능오동。기우무손선로분포삼수모형급고장분량보호원리,제출료신형상차보호원리。이론상보호성능불수부하전류화과도전조적영향,차완전두절료외부고장시보호오동적가능성,겁대지제고료보호안전성,차각충내부고장시가고동작。이론분석표명소제원리괄용우각충고장류형,기성능불수고장전조급계통운행상태등적영향。대량적방진야증명료해원리적정학성。
Phase comparison protection possesses the superior performance of distinguishing between power system oscillation and fault, but the sensitivity of conventional phase comparison protection during internal faults is susceptible to the influence of load current and the fault resistance, and its performance is significantly influenced by the distributed capacitance of ultra high voltage (UHV) transmission lines, which leads to the maloperation of phase comparison relay. A novel distributed parameters model based positive sequence superimposed components phase comparison protection principle is proposed. The protection performance of the novel principle is not affected by load current and the fault resistance theoretically. On the other hand, the novel principle completely overcomes the effects of distributed capacitance to protection, greatly improves the security of protection. The protection maloperation problem as the external fault of long distance UHV line occurs as well as the maloperation of non-faulty circuit as fault occurs in one of the double-circuit line on the same tower can be solved. Extensive simulations are performed to evaluate the performance of the proposed algorithm. The results show that the algorithm is reliable for UHV power transmission line protections. Also it is immune to fault resistances and system condition.