Complex problem solving : understanding how people control complex dynamic systems 探索人們?nèi)绾慰刂茝?fù)雜動態(tài)系統(tǒng)
Power system is a complex dynamic system . this paper concentrates on the research of power system low frequency oscillation based on angle measurement technology 電力系統(tǒng)是一個復(fù)雜的動態(tài)系統(tǒng),其振蕩穩(wěn)定問題一直是電力系統(tǒng)研究的熱點(diǎn)問題。
Applying self - organized theory of complex dynamics system , we have synthetically studied the observational results of present - day crustal movement from contemporary geodesy ( gps and earthquake crustal deformation ) in recent 40 years 摘要應(yīng)用復(fù)雜動力學(xué)系統(tǒng)自組織理論,綜合研究了近40年現(xiàn)代大地測量學(xué)(地震地形變及gps )對現(xiàn)今地殼運(yùn)動的觀測結(jié)果。
The sea method need a much simpler description of the system and has many advantage in analysis of high frequency , high modal density and complex dynamic systems in despite of limitations of assuming that the system is conservative and light coupling 統(tǒng)計能量方法并不需要進(jìn)行結(jié)構(gòu)的詳盡描述,且在分析含有高頻、高模態(tài)密度的復(fù)雜系統(tǒng)的耦合動力學(xué)問題有一定的優(yōu)勢。盡管統(tǒng)計能量方法也存在一些局限性,如它需要結(jié)構(gòu)滿足保守和弱耦合條件兩個基本假定。
It is one theoretical foundation for the complex dynamic systems , especially for the fields of spacecraft dynamics and ocean exploitation engineering etc . with further developments of aviation enterprises and irrigation works , the study of dynamic behavior of solid - fluid interaction has been increasingly concerned 流固耦合動力學(xué)是研究變形固體在流場作用下的各種行為以及固體位形對流場影響這二者交互作用的一門科學(xué),是航天器結(jié)構(gòu)和海洋開發(fā)工程等復(fù)雜動力系統(tǒng)的主要理論基礎(chǔ)。