电力系统自动化
電力繫統自動化
전력계통자동화
AUTOMATION OF ELECTRIC POWER SYSTEMS
2012年
14期
77-82
,共6页
直流输电%共用接地极线%极电流不平衡保护%过电压保护%反时限保护
直流輸電%共用接地極線%極電流不平衡保護%過電壓保護%反時限保護
직류수전%공용접지겁선%겁전류불평형보호%과전압보호%반시한보호
high-voltage direct current(HVDC)%common grounding electrode lines%electrode current unbalanced protection%electrode over voltage protection%inverse-time protection
分析了传统接地极保护用于共接地极线模式时存在的不合理性。利用电路原理对共接地极线模式下各类故障时的电气参数进行计算得出:当接地故障发生在共接地极线处时,故障点离接地极点越近,各系统的保护装置测得的不平衡电流越小;当接地故障发生在各自独立接地极线上时,故障点离直流开关站越近,故障侧的保护装置测得的不平衡电流越大,与正常运行侧的保护装置测得的不平衡电流情况相反。由此得出:断线故障时的不平衡电流为固定值;单线故障对过电压保护影响不大;双极运行系统不平衡电流对保护的影响与其流入方向和大小有关。最后,针对故障电流特性,建议对不平衡电流保护进行故障定位及反时限功能的改进。
分析瞭傳統接地極保護用于共接地極線模式時存在的不閤理性。利用電路原理對共接地極線模式下各類故障時的電氣參數進行計算得齣:噹接地故障髮生在共接地極線處時,故障點離接地極點越近,各繫統的保護裝置測得的不平衡電流越小;噹接地故障髮生在各自獨立接地極線上時,故障點離直流開關站越近,故障側的保護裝置測得的不平衡電流越大,與正常運行側的保護裝置測得的不平衡電流情況相反。由此得齣:斷線故障時的不平衡電流為固定值;單線故障對過電壓保護影響不大;雙極運行繫統不平衡電流對保護的影響與其流入方嚮和大小有關。最後,針對故障電流特性,建議對不平衡電流保護進行故障定位及反時限功能的改進。
분석료전통접지겁보호용우공접지겁선모식시존재적불합이성。이용전로원리대공접지겁선모식하각류고장시적전기삼수진행계산득출:당접지고장발생재공접지겁선처시,고장점리접지겁점월근,각계통적보호장치측득적불평형전류월소;당접지고장발생재각자독립접지겁선상시,고장점리직류개관참월근,고장측적보호장치측득적불평형전류월대,여정상운행측적보호장치측득적불평형전류정황상반。유차득출:단선고장시적불평형전류위고정치;단선고장대과전압보호영향불대;쌍겁운행계통불평형전류대보호적영향여기류입방향화대소유관。최후,침대고장전류특성,건의대불평형전류보호진행고장정위급반시한공능적개진。
The illogicality of the traditional grounding electrode protection used in the configuration of common grounding electrode lines is analyzed. Under the common grounding electrode lines configuration, the electric parameters under each type of fault according to the circuit theory are calculated. It can be concluded that the unbalanced current measured by the protection of every system becomes small when the fault on the common grounding electrode lines is near the grounding location. The unbalanced current measured by the protection equipped on the fault side becomes large when the fault is near the DC switch station in each grounding electrode line, and the unbalanced current measured by the protection equipped on the normal side is on the contrary. It is also concluded that the unbalanced current is fixed when single-line is broken, all the single- line-fault affect little to the over-voltage protection, and the unbalanced currents in the bipolar affect the electrode current unbalanced protection depend on its direction and magnitude. Finally, it is suggested that the current unbalanced protection should adopt fault location and the inverse-time function considering the characteristics of the fault circuit.