电力系统自动化
電力繫統自動化
전력계통자동화
AUTOMATION OF ELECTRIC POWER SYSTEMS
2001年
2期
37-39
,共3页
电力系统%线路距离保护%全线相继速动%双正交小波
電力繫統%線路距離保護%全線相繼速動%雙正交小波
전력계통%선로거리보호%전선상계속동%쌍정교소파
在线路距离保护Ⅱ段范围发生故障时,利用对侧开关跳闸时序电流的突变量加速本侧保护的跳闸,改善了保护的性能。这一相继速动原理曾在微机线路保护中得到应用,但在某些系统参数和故障类型下序电流的工频突变量微弱,判据灵敏度不足。文中提出了用双正交小波变换检测突变量的方法,以解决利用序电流作为突变量存在死区的问题。
在線路距離保護Ⅱ段範圍髮生故障時,利用對側開關跳閘時序電流的突變量加速本側保護的跳閘,改善瞭保護的性能。這一相繼速動原理曾在微機線路保護中得到應用,但在某些繫統參數和故障類型下序電流的工頻突變量微弱,判據靈敏度不足。文中提齣瞭用雙正交小波變換檢測突變量的方法,以解決利用序電流作為突變量存在死區的問題。
재선로거리보호Ⅱ단범위발생고장시,이용대측개관도갑시서전류적돌변량가속본측보호적도갑,개선료보호적성능。저일상계속동원리증재미궤선로보호중득도응용,단재모사계통삼수화고장류형하서전류적공빈돌변량미약,판거령민도불족。문중제출료용쌍정교소파변환검측돌변량적방법,이해결이용서전류작위돌변량존재사구적문제。
This paper presents a novel approach to accelerated trip of power transmission lines by using biorthogonal wavelet transform to improve the performance of protection relays. The existing accelerated trip principle has been widely applied. However, a lower sensitivity has been observed for some special system parameters and fault types to which the second abrupt changes of sequence currents are especially faint. A wavelet decomposition algorithm is proposed in this paper, which possesses capabilities of fast calculation, partitioning the higher frequency band and linear phase. This algorithm provides an accelerated trip scheme, which can efficiently extract the faint second abrupt changes of currents and is able to deal with the dead-zone problem of conventional scheme. The simulation results of MATLAB/SIMULINK show its feasibility and efficiency.