系统工程理论与实践
繫統工程理論與實踐
계통공정이론여실천
Systems Engineering—Theory & Practice
2012年
12期
2718~2723
,共null页
遗传算法 复杂适应系统 演化仿真
遺傳算法 複雜適應繫統 縯化倣真
유전산법 복잡괄응계통 연화방진
genetic algorithm; complex adaptive system; evolution and simulation
复杂性科学研究已经成为系统科学领域研究的重要方向,然而由于复杂系统的多层次、非线性等特点,加之含有大量随机不确定因素,给系统的演化仿真工作带来巨大的困难,提出基于实数编码的多目标嵌套加速遗传算法(RMONAGA)来对复杂系统进行演化仿真,利用复杂适应系统自身特点与遗传算法特点的相似性,采用嵌套、多目标等方法较好的解决了复杂系统中不同层次交互、不同部门间适应性矛盾等问题.将该方法应用于三江平原区域农业水土资源复杂适应性优化配置演化研究中,验证了该方法的科学合理性,以期对CAS理论在各领域的建模仿真工作提供一定的帮助.
複雜性科學研究已經成為繫統科學領域研究的重要方嚮,然而由于複雜繫統的多層次、非線性等特點,加之含有大量隨機不確定因素,給繫統的縯化倣真工作帶來巨大的睏難,提齣基于實數編碼的多目標嵌套加速遺傳算法(RMONAGA)來對複雜繫統進行縯化倣真,利用複雜適應繫統自身特點與遺傳算法特點的相似性,採用嵌套、多目標等方法較好的解決瞭複雜繫統中不同層次交互、不同部門間適應性矛盾等問題.將該方法應用于三江平原區域農業水土資源複雜適應性優化配置縯化研究中,驗證瞭該方法的科學閤理性,以期對CAS理論在各領域的建模倣真工作提供一定的幫助.
복잡성과학연구이경성위계통과학영역연구적중요방향,연이유우복잡계통적다층차、비선성등특점,가지함유대량수궤불학정인소,급계통적연화방진공작대래거대적곤난,제출기우실수편마적다목표감투가속유전산법(RMONAGA)래대복잡계통진행연화방진,이용복잡괄응계통자신특점여유전산법특점적상사성,채용감투、다목표등방법교호적해결료복잡계통중불동층차교호、불동부문간괄응성모순등문제.장해방법응용우삼강평원구역농업수토자원복잡괄응성우화배치연화연구중,험증료해방법적과학합이성,이기대CAS이론재각영역적건모방진공작제공일정적방조.
The research of complex system science has became an very essential part of the system scmnce. However, due to it's multi-level, nonlinear, and coupled with a large number of random uncertainties in the evolution of simulation work to the system caused immense difficulties. On this background, the real coded multi-objective nested accelerating genetic algorithm (RMONAGA) has been proposed to evolve and simulate the complex system. Based on the similarity between the features of system and characteristics of this algorithm, the problem of interaction of different levels and the adaptive conflict between different sectors has been solved by using the nested and multi-objective method. The method is applied to do the research of regional agricultural soil and water resources complex adaptive system optimization of Sanjiang Plain. The result shows that this method is scientifically rational, in order to provide some help in the field of modeling and simulation when CAS theory have been applied.