计算机工程与应用
計算機工程與應用
계산궤공정여응용
COMPUTER ENGINEERING AND APPLICATIONS
2010年
9期
55-58
,共4页
液压集成块%智能设计%多智能体%动态关联
液壓集成塊%智能設計%多智能體%動態關聯
액압집성괴%지능설계%다지능체%동태관련
hydraulic manifold block%intelligent design%multi-agent%dynamic association
液压集成块布局设计与油路连通设计是强耦合、弱鲁棒性的设计,而采用自动优化算法又难以保证设计关联和工程设计意图.提出一种基于多智能体的液压集成块智能设计方法,多智能体系统由元件智能体、油路智能体和控制智能体三类智能体组成,元件智能体可实现元件布局的优化调整,油路智能体可进行连通油路的自动创建、内部有效性验证和关联更新,控制智能体用于协调元件智能体与油路特征智能体之间的设计活动及冲突消解方案决策等.三类智能体之间的通信采用黑板模式,通过三者的交互协调,可以实现液压集成块动态关联的智能设计.
液壓集成塊佈跼設計與油路連通設計是彊耦閤、弱魯棒性的設計,而採用自動優化算法又難以保證設計關聯和工程設計意圖.提齣一種基于多智能體的液壓集成塊智能設計方法,多智能體繫統由元件智能體、油路智能體和控製智能體三類智能體組成,元件智能體可實現元件佈跼的優化調整,油路智能體可進行連通油路的自動創建、內部有效性驗證和關聯更新,控製智能體用于協調元件智能體與油路特徵智能體之間的設計活動及遲突消解方案決策等.三類智能體之間的通信採用黑闆模式,通過三者的交互協調,可以實現液壓集成塊動態關聯的智能設計.
액압집성괴포국설계여유로련통설계시강우합、약로봉성적설계,이채용자동우화산법우난이보증설계관련화공정설계의도.제출일충기우다지능체적액압집성괴지능설계방법,다지능체계통유원건지능체、유로지능체화공제지능체삼류지능체조성,원건지능체가실현원건포국적우화조정,유로지능체가진행련통유로적자동창건、내부유효성험증화관련경신,공제지능체용우협조원건지능체여유로특정지능체지간적설계활동급충돌소해방안결책등.삼류지능체지간적통신채용흑판모식,통과삼자적교호협조,가이실현액압집성괴동태관련적지능설계.
Layout design and flow path connection design are close coupling and weak robust design.But design association and engineering intention are difficult to be realized through automatic optimization algorithm.The intelligent design methodology of Hydraulic Manifold Block(HMB) based on Multi-Agent(MA) is proposed,including Hydraulic Component Agent(HCA) ,Flow Path Agent(FPA) and Control Agent(CA) .HCA performs duties of optimization layout design and adjustment of hydraulic components;FPA does duties of automatic construction of flow path connection,inner validity check and associated updating;CA deals with interactive design activities and confliction resolution of HCA and FPA.HCA,FPA and CA communicate with each other by blackboard manner.Finally intelligent design of HMB,which is dynamic and associated,will be realized by cooperating HCA,FPA and CA.