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    Research and Implementation of the Parallel NC Programming and Simulation
    并行化数控编程和加工仿真关键技术的研究与实现
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    Research on Performance Analysis and Optimization Techniques for Scientific Programs
    科学计算程序性能分析与优化关键技术研究
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    Research on Key-Technology of Face Recognition Theory
    人脸识别理论关键技术的研究
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    Studies on Copyright Protection of MPEG-4 Audio
    MPEG-4音频数字版权保护关键问题的研究
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    Research on the KeyTechnology of Production Management and ASP Platform in the Extended Enterprise
    网络联盟企业生产管理关键技术及ASP支持平台研究
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How can the principal projections of two segments of skew lines be transformed by several steps of substitution of projection planes into auxiliary projections of equal lengths with a given included angle? This is a basic problem in graphical method. The essence of the problem is to define the direction of projection, from which the auxiliary projections as required above, will result. This paper presents a graphical method for defining the direction of projection for two segments of skew lines of either equal...

How can the principal projections of two segments of skew lines be transformed by several steps of substitution of projection planes into auxiliary projections of equal lengths with a given included angle? This is a basic problem in graphical method. The essence of the problem is to define the direction of projection, from which the auxiliary projections as required above, will result. This paper presents a graphical method for defining the direction of projection for two segments of skew lines of either equal or unequal lengths respectively. The corresponding anxiliary projections are also shown.

如何由两交叉直线段的基本投影,经过几次变换投影面,使其辅助投影成为等长而夹成定角的两直线段?这是图解方法中的一个基本问题,关键在于确定获得这一辅助投影的投射方向。本文就两交叉直线段为等长或不等长的两种情况,分别介绍确定这一投射方向的图解法,并作出相应的辅助投影。

This paper deals with the coordination of traditional network planning technique and decision theory, to formulate a new kind of network planning methods. The first part of the paper describes a new heuristic method of DCPM. Then the decision networks under uncertainty and under risk are discussed. Finally the multiple objective decision networks are studied.

本文研究如何将一般的网络计划方法与决策理论结合起来,形成一类新的网络计划法──决策网络计划法。文中首先讨论决策关键路法,其次将它推广到外界因素不确定的情况下的决策计划,以及多目标的决策计划。最后指出了进一步发展的可能性.

In this paper, unknown variables will be introduced into the logic reasoning process, thus bringing the analytic technique into the range of automation. The analytic technique automation is included in a significant portion of artificial intelligence.The point raised in this article is that in future artificial intelligence machines (robot), the key problem does not involve that the robot is commanded to perform but involves how the robot is to search for an approach - the premises, in order to attain a certain...

In this paper, unknown variables will be introduced into the logic reasoning process, thus bringing the analytic technique into the range of automation. The analytic technique automation is included in a significant portion of artificial intelligence.The point raised in this article is that in future artificial intelligence machines (robot), the key problem does not involve that the robot is commanded to perform but involves how the robot is to search for an approach - the premises, in order to attain a certain aim - conclusion in any unknown environment. To achieve this ability, the robot must determine which premises are lacking for attaining this target and whether these premises exist or not in accordance with the objective environment and through analysis of its knowledge gained. The above-mentioned process is called analytic technique automation and can be achieved through analysis of the special solution subset in the solution sets of the logical equation.

在本文中将未知变量引入到逻辑推理的过程,使分析技术进入了自动化的范畴。分析技术的自动化是人工智能的一个重要组成部分。 本文提出的一个论点是:对未来的人工智能机器(机器人),关键的问题不是在于我们给机器规定了什么叫它去执行,而是要求机器人在任意未知的环境条件下,为了达到某一个目标——结论,如何去寻找为实现这个目标的途径——前提。机器人要是具有这种能力,就必须能按照客观的环境条件和已经学得的知识进行分析,判定为达到这个目标尚缺少几项前提,并寻找这些前提是否存在。上述过程可称之为分析技术自动化,可以通过分析逻辑方程的解集中的特殊形式的解来达到。

 
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