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特性网格
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  “特性网格”译为未确定词的双语例句
     As the resources under the grid environment are heterogeneous,dynamic and widely distributed,the resource management and scheduling are very complicated.
     由于资源具有广域分布、异构、动态等特性,网格环境下的资源管理和调度是一个非常复杂且具有挑战性的问题。
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  相似匹配句对
     being adapted to the dynamic of grid resources;
     能够适应网格资源动态变化的特性 ;
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     Talk about great global grid
     网格漫谈
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     The Mesh Point Battle
     网格点阵
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     ENERGY CHARACTERISTICS OF R.L.C
     R.L.C的能量特性
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     PROPERTIES OF BIPOLARONS
     双极化子的特性
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  property lattice
We give seven necessary physical conditions on a property lattice for to describe two quantum systems when they are separated.
      
is provided in the context of a property lattice ?(A, ∑) for a realistic entity (A, ∑) in the sense of Foulis-Piron-Randall.
      
Then this criterion is used in order to compare the physical content of the (Jauch-Piron's) property lattice with the physical content of the poset of testable properties.
      
For more general preparation-question structures the physical content of the poset of testable property can be larger than that of the property lattice.
      
Morphisms have been used successfully to describe the evolution ofentities, and the separated product is a model for the property lattice of separatedsystems; its set of atoms is the Cartesian product of each atom space.
      


To solve resource co-allocation problem of grid computing,a decentralized grid resource co-allocation model(MGRM) was proposed,based on market model,multi-unit combinatorial auctions((MUCA)).Regarding grid resources as auctioned commodities and tasks as bidders,MGRM optimized resource co-allocation by computing the optimal solutions for MUCA,using Branch-and-Bound techniques.Subject to wide-area grid environment,a new method of computing the upper-bound of the sub MUCA is proposed.The experiment indicated that...

To solve resource co-allocation problem of grid computing,a decentralized grid resource co-allocation model(MGRM) was proposed,based on market model,multi-unit combinatorial auctions((MUCA)).Regarding grid resources as auctioned commodities and tasks as bidders,MGRM optimized resource co-allocation by computing the optimal solutions for MUCA,using Branch-and-Bound techniques.Subject to wide-area grid environment,a new method of computing the upper-bound of the sub MUCA is proposed.The experiment indicated that amended method could get an extremely effectively pruning of the search tree,and the proposed MGRM is suitable for the wide-area inter-grid which hold large amount of grid tasks and resources.

针对网格资源协同分配问题,提出了基于市场机制的具有分布式特性的网格资源协同分配模型(MGRM).采用了多单位组合拍卖模型(MUCA)对网格中的资源协同分配进行建模,并使用分支界限法求解多单位组合拍卖问题,从而得到网格资源协同分配问题的最优解.针对网格任务和资源特性,对现有的分支界限法解MUCA进行改进,根据搜索路径上当前可用资源估算MUCA问题的投标上限.试验仿真表明,改进后的算法效率大大提高,证实MGRM模型适合于具有大量任务和资源共享的广域网格环境.

Geodesic was used to divide the surface into several regions and mesh the surface,then energy of the meshed surface was adjusted to minimize the deformation.Finally,the development from 3D surface to 2D planar counterpart based on the character of geodesic was realized.A more suitable mesh model for the material character simulation was adopted in the method,which was beneficial to investigate the influence of different materials on development.Results showed that the development method had better effect and...

Geodesic was used to divide the surface into several regions and mesh the surface,then energy of the meshed surface was adjusted to minimize the deformation.Finally,the development from 3D surface to 2D planar counterpart based on the character of geodesic was realized.A more suitable mesh model for the material character simulation was adopted in the method,which was beneficial to investigate the influence of different materials on development.Results showed that the development method had better effect and less deformation.

利用测地线完成待展开曲面的区域化和网格映射,并调整映射过程中产生的网格能量以减少扭曲形变,最后根据测地曲线的特征完成三维曲面到二维平面的展开.方法中使用更适宜模拟材质特性的网格模型,有利于考察不同材质对展开结果的影响.结果证明这是一种运算快速简洁而且结果精确的曲面展开法.

The GREAT GLOBAL GRID cause the user and the application produce may visit security any information any place through any type GREAT GLOBAL GRID. The GREAT GLOBAL GRID is entire synthesizes the entire Internet a huge super computation, realizes computation resources, the memory resources, the data resources, the information resource, the knowledge resources, expert resources comprehensive sharing. The GREAT GLOBAL GRID emphasizes comprehensively the shared resource, comprehensively applies the service. The present...

The GREAT GLOBAL GRID cause the user and the application produce may visit security any information any place through any type GREAT GLOBAL GRID. The GREAT GLOBAL GRID is entire synthesizes the entire Internet a huge super computation, realizes computation resources, the memory resources, the data resources, the information resource, the knowledge resources, expert resources comprehensive sharing. The GREAT GLOBAL GRID emphasizes comprehensively the shared resource, comprehensively applies the service. The present technology has not realized resources comprehensive sharing, is only the information transmission, therefore belongs to the network technology, but non-GREAT GLOBAL GRID The GREAT GLOBAL GRID technology takes a new Internet new tide the symbol, is must promote the net for the GREAT GLOBAL GRID, namely realizes WWW to the GGG transformation.This paper introduces the GREAT GLOBAL GRID’s concept as well as the GREAT GLOBAL GRID characteristic, the GREAT GLOBAL GRID application, the GREAT GLOBAL GRID high performance performance, the realization GREAT GLOBAL GRID computation goal solution question as well as the world and China's GREAT GLOBAL GRID development.

信息网格使用户和应用程序可以通过任何类型的网络安全地访问任何地方的任何信息。网格是把整个因特网整合成一台巨大的超级计算机,实现计算资源、存储资源、数据资源、信息资源、知识资源、专家资源的全面共享。网格强调全面地共享资源、全面地应用服务。我们目前的技术还没有实现资源层面的全面共享,只是信息的传输,所以属于网络技术,而非网格技术。网格技术做为一个新的互联网新一次浪潮的标志,就是要将万维网(WorldWideWeb)升华为网格(GreatGlobalGrid),即实现WWW到GGG的变革。该文介绍了网格的概念以及网格的特性、网格的应用、网格的高性能表现、实现网格计算的目标解决的问题以及世界和中国网格的发展。

 
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