中国电机工程学报
中國電機工程學報
중국전궤공정학보
ZHONGGUO DIANJI GONGCHENG XUEBAO
2013年
19期
111-118
,共8页
刘俊磊%王钢%李海锋%周全%郑伟
劉俊磊%王鋼%李海鋒%週全%鄭偉
류준뢰%왕강%리해봉%주전%정위
交直流互联系统%换相失败%交流电网继电保护
交直流互聯繫統%換相失敗%交流電網繼電保護
교직류호련계통%환상실패%교류전망계전보호
AC/DC interconnection system%commutation failure%AC power network relay protection
在交直流互联系统中,交流电网故障引发的直流换相失败可导致交流电网保护不正确动作。分析建立了换相失败情况下逆变器的开关函数模型和直流电流暂态变化模型;根据调制理论及卷积定理,推导出了换相失败情况下直流系统注入交流电网的等值工频及工频变化量电流的动态相量模型;通过分析表明该等值工频及工频变化量电流的变化特性有别于纯交流系统,可能造成交流电网故障引发换相失败时交流电网保护的不正确动作;最后,结合两种具体的交流电网保护,分析了直流换相失败导致交流电网保护不正确动作的机理,为交直流系统继电保护策略研究提供了理论基础。
在交直流互聯繫統中,交流電網故障引髮的直流換相失敗可導緻交流電網保護不正確動作。分析建立瞭換相失敗情況下逆變器的開關函數模型和直流電流暫態變化模型;根據調製理論及捲積定理,推導齣瞭換相失敗情況下直流繫統註入交流電網的等值工頻及工頻變化量電流的動態相量模型;通過分析錶明該等值工頻及工頻變化量電流的變化特性有彆于純交流繫統,可能造成交流電網故障引髮換相失敗時交流電網保護的不正確動作;最後,結閤兩種具體的交流電網保護,分析瞭直流換相失敗導緻交流電網保護不正確動作的機理,為交直流繫統繼電保護策略研究提供瞭理論基礎。
재교직류호련계통중,교류전망고장인발적직류환상실패가도치교류전망보호불정학동작。분석건립료환상실패정황하역변기적개관함수모형화직류전류잠태변화모형;근거조제이론급권적정리,추도출료환상실패정황하직류계통주입교류전망적등치공빈급공빈변화량전류적동태상량모형;통과분석표명해등치공빈급공빈변화량전류적변화특성유별우순교류계통,가능조성교류전망고장인발환상실패시교류전망보호적불정학동작;최후,결합량충구체적교류전망보호,분석료직류환상실패도치교류전망보호불정학동작적궤리,위교직류계통계전보호책략연구제공료이론기출。
In the AC/DC interconnection system, the DC commutation failure caused by AC power network fault can lead to maloperation of AC power network protection. In this paper, under the commutation failure condition, a switching function model of inverters and a transient change model of DC current were established. According to modulation theory and convolution theorem, the dynamic phasor model of DC system equivalent current of power-frequency component variation was deduced. The analysis shows that the variation characteristics of the equivalent current of power-frequency component variation are different from those of pure AC system, which may lead to maloperation of AC power network protection under the DC commutation failure caused by AC power network fault. At last, combining the two specific AC power network protection, the mechanism for maloperation of AC power network protection caused by DC commutation failure was analyzed, which provided a theoretical basis for research on protection strategy of AC/DC interconnection system.