电力系统保护与控制
電力繫統保護與控製
전력계통보호여공제
POWER SYSTM PROTECTION AND CONTROL
2013年
19期
87-94
,共8页
沈静%方春恩%梁鸣华%李伟%罗彦%张彼德%翟帆
瀋靜%方春恩%樑鳴華%李偉%囉彥%張彼德%翟帆
침정%방춘은%량명화%리위%라언%장피덕%적범
输电线路%短路故障%故障识别%矩阵变换函数%短时动态去噪
輸電線路%短路故障%故障識彆%矩陣變換函數%短時動態去譟
수전선로%단로고장%고장식별%구진변환함수%단시동태거조
transmission line%short-circuit fault%fault identification%matrix transformation function%short-time dynamic denoising
为快速准确识别高压输电线路短路故障,提出一种故障检测与选相的新方法。基于正弦信号经矩阵变换时移不变的特性,应用4采样点短数据窗的矩阵行列式变换函数,动态滑动窗口进行短路故障检测。对采集的各相电流电压值经短时动态去噪后计算其矩阵变换函数K系数值,通过K值与阈值的比较识别故障类型。在Matlab/Simulink下搭建220 kV双端电源输电系统短路故障模型进行验证,结果表明,该方法能在不同条件下准确识别短路故障,具有较高的灵敏性、可靠性,理论上故障检测与选相不超过5 ms。
為快速準確識彆高壓輸電線路短路故障,提齣一種故障檢測與選相的新方法。基于正絃信號經矩陣變換時移不變的特性,應用4採樣點短數據窗的矩陣行列式變換函數,動態滑動窗口進行短路故障檢測。對採集的各相電流電壓值經短時動態去譟後計算其矩陣變換函數K繫數值,通過K值與閾值的比較識彆故障類型。在Matlab/Simulink下搭建220 kV雙耑電源輸電繫統短路故障模型進行驗證,結果錶明,該方法能在不同條件下準確識彆短路故障,具有較高的靈敏性、可靠性,理論上故障檢測與選相不超過5 ms。
위쾌속준학식별고압수전선로단로고장,제출일충고장검측여선상적신방법。기우정현신호경구진변환시이불변적특성,응용4채양점단수거창적구진행렬식변환함수,동태활동창구진행단로고장검측。대채집적각상전류전압치경단시동태거조후계산기구진변환함수K계수치,통과K치여역치적비교식별고장류형。재Matlab/Simulink하탑건220 kV쌍단전원수전계통단로고장모형진행험증,결과표명,해방법능재불동조건하준학식별단로고장,구유교고적령민성、가고성,이론상고장검측여선상불초과5 ms。
In order to identify the short-circuit fault of high-voltage transmission lines fast and accurately, a novel method for fault detection and phase selection is discussed. Based on shift invariant features of sinusoidal signals after matrix transformations, applying matrix transformation function with 4 sampling points ultra-short data window, the short-circuit fault is detected by dynamic sliding window. The sampling values of each phase current and voltage are used to calculate their K values after short-time dynamic denoising, through comparison of the K value and the threshold, the fault type is identified. A short-circuit fault model of 220 kV dual-source power transmission system is established in MATLAB/Simulink environment, simulation results show that the method has high sensitivity and reliability and it can accurately identify the short-circuit fault under different conditions, theoretically, the time of fault detection and phase selection does not exceed 5 ms.