电网技术
電網技術
전망기술
POWER SYSTEM TECHNOLOGY
2014年
1期
3762-3767
,共6页
低频振荡%模态分析%模式相互作用%内共振%非线性相互作用
低頻振盪%模態分析%模式相互作用%內共振%非線性相互作用
저빈진탕%모태분석%모식상호작용%내공진%비선성상호작용
low frequency oscillation%modal analysis%modal interaction%internal resonance%nonlinear interaction
内共振是非线性多自由度系统自由振荡的一种重要现象。基于内共振机理分析了电力系统低频振荡中的非线性因素影响和模式间的非线性相互作用。系统方程中的非线性项使得模式之间不能完全解耦,存在非线性相互作用,当频率关系合适时,非线性项使得被影响模式发生强迫振荡。电力系统低频振荡分析中需要主要关注1:2和1:1内共振,并分析了电力系统中内共振发生的条件。仿真了内共振的具体算例,验证了所提出的内共振条件。内共振导致不同振荡模式间出现很强的非线性相互作用,使得系统的动态行为和线性化系统模态分析的结果存在很大差异,为电力系统中弱阻尼局部模式引发区间振荡等非线性特殊现象的分析提供了一种新的机理和思路。
內共振是非線性多自由度繫統自由振盪的一種重要現象。基于內共振機理分析瞭電力繫統低頻振盪中的非線性因素影響和模式間的非線性相互作用。繫統方程中的非線性項使得模式之間不能完全解耦,存在非線性相互作用,噹頻率關繫閤適時,非線性項使得被影響模式髮生彊迫振盪。電力繫統低頻振盪分析中需要主要關註1:2和1:1內共振,併分析瞭電力繫統中內共振髮生的條件。倣真瞭內共振的具體算例,驗證瞭所提齣的內共振條件。內共振導緻不同振盪模式間齣現很彊的非線性相互作用,使得繫統的動態行為和線性化繫統模態分析的結果存在很大差異,為電力繫統中弱阻尼跼部模式引髮區間振盪等非線性特殊現象的分析提供瞭一種新的機理和思路。
내공진시비선성다자유도계통자유진탕적일충중요현상。기우내공진궤리분석료전력계통저빈진탕중적비선성인소영향화모식간적비선성상호작용。계통방정중적비선성항사득모식지간불능완전해우,존재비선성상호작용,당빈솔관계합괄시,비선성항사득피영향모식발생강박진탕。전력계통저빈진탕분석중수요주요관주1:2화1:1내공진,병분석료전력계통중내공진발생적조건。방진료내공진적구체산례,험증료소제출적내공진조건。내공진도치불동진탕모식간출현흔강적비선성상호작용,사득계통적동태행위화선성화계통모태분석적결과존재흔대차이,위전력계통중약조니국부모식인발구간진탕등비선성특수현상적분석제공료일충신적궤리화사로。
Internal resonance is an important phenomenon in the free oscillation of nonlinear multi-degree-of-freedom system. Based on the mechanism of internal resonance the impact of nonlinear factors in power system low-frequency oscillation and the nonlinear interaction among modes are analyzed. The nonlinear terms in system equation make the complete decoupling among modes disabled and it leads to the existence of nonlinear interaction, thus when the frequency relationship is adequate, the nonlinear terms induce forced oscillation of affected mode. During the analysis on power system low-frequency oscillation the main attention should be paid to the 1:2 and 1:1 internal resonance, and the conditions, under which the internal resonance in power system occurs, are analyzed. The cases of internal resonance are simulated and the proposed conditions of internal resonance are verified. Internal resonance leads to strong nonlinear interaction among different oscillation modes and make evident difference between the dynamic behavior of power system and the results of modal analysis of linearized system. This research offers a new mechanism and thinking for the analysis on nonlinear special phenomena such as inter-area oscillation caused by poorly damped local mode and so on.