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Multiagent Flight Control and Virtual Navigation

机译:多层飞行控制和虚拟导航

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Multiagent visual computing techniques are applied to design autonomous flight control and spacecraft navigation. The basic technique introduced in (Nourani1995) is that of viewing the world as many possible worlds with agents at each world that compliment one another in problem solving by cooperating. The double vision computing paradigm with objects and agents might be depicted by the following figure. The cooperative problem solving paradigms have been applied ever since the AI methods put forth by Hays-Roth. However, the muliagent multi-board techniques due to the author (Nourani1995). The techniques to be presented are to be applied to Mobile Multimedia. Communication and computation by multimedia visual-object languages can be programmed with IM with a simple syntax. The techniques to be presented are to be applied for (a) Precomputed video-object composition and combination for spatial morph Gentzen computing with visual objects (b) High speed visual spacecraft navigation with multiagent multimedia. The Morph Gentzen Computing Logic for computing for multimedia is new projects with important computing applications since (Genesereth & Nilsson 1987) The basic principles are a mathematical logic where a Gentzen (Gentzen et al.1943) or natural deduction systems are defined by taking arbitrary structures and multimedia objects coded by diagram functions. Multimedia objects are viewed as syntactic objects defined by functions, to which the deductive system is applied. The deduction rules are a Gentzen system augmented by Morphing, and Transmorphing on events {p1,p2,...,pn} with a consequent hybrid picture p. Thus the combination is an impetus event. The deductive theory is a Gentzen system in which hybrid pictures are named by parameterized functions; augmented with the morph rules. A soundness and completeness theorem has been put forth in the author's papers on Morph Gentzen, which is applied to visual multiagent flight control and planning.
机译:多验视计算技术应用于设计自主飞行控制和航天器导航。 (Nourani1995)中介绍的基本技术是将世界视为与每个世界各地的可能性的世界各界,以通过合作解决问题解决问题。具有对象和代理的双视觉计算范例可以通过下图来描绘。自从Hays-Roth提出的AI方法以来,求解了求解范式的合作问题。但是,由于作者(Nourani1995),Muliagent多板技术。要呈现的技术将应用于移动多媒体。通过简单的语法,可以使用MultiMedia Visual-objet语言进行编程通信和计算。要呈现的技术应适用于(a)预先计算的视频对象组合物组合物,用于使用多媒体多媒体的视觉对象(b)高速视宇宙飞船导航来计算空间变形终止计算。用于计算多媒体的MorphEngengen计算逻辑是具有重要计算应用的新项目,因为(Genesereth&Nilsson 1987),基本原则是一种数学逻辑,其中通过采取任意结构来定义绅士(Gentzen等人1943)或自然扣除系统和由图表函数编码的多媒体对象。多媒体对象被视为由函数定义的句法对象,应用了Deftive系统的应用。扣除规则是通过变形而增强的绅士系统,并通过随后的混合图像p传输事件{p1,p2,...,pn}。因此,组合是动力事件。演绎理论是一种绅士系统,其中混合图片由参数化功能命名;用Morph规则增强。作者在Morph Gentzen的论文中提出了健全和完整性定理,该论文适用于可视化多元飞行控制和规划。

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