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网络拓扑结构

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If the topology is fixed and time-invariant, the consensus value of discrete-time systems also globally asymptotically converges to the convex combination of initial states, which is identical to continuous systems.

如果多智能体网络系统的拓扑结构没有改变,在离散状态下系统的一致平衡点仍收敛于初始状态的凸组合,并且离散状态下系统的一致平衡点与连续状态下系统的一致平衡点相等。

Second, we prove that consensus value of continuous time-invariant systems converges globally asymptotically to the convex combination of initial states, thus, determining the consensus value of the non-balanced topology.

对于多智能体网络连续系统,该系统的一致平衡点最终收敛于初始状态的凸组合,本文最终确定了非平衡拓扑结构的一致平衡点。

We present some new topologies of components and devices, embedded passive circuits and interconnections with good EM properties which can meet development of microwave and millimeter wave LTCC technology and domestic state of arts and crafts inland. These algorithms are applied to optimization of LTCC circuits by using relevant production and applicable techniques in SM study, i.e. optimizing and designing various LTCC capacitors and inductances by original space mapping, LTCC transitions by aggressive space mapping and equivalent lumped-element LTCC filters by knowledge-based aggressive space mapping and neural space mapping.

并且针对微波、毫米波LTCC技术发展需要和国内加工水平,探索具有良好电磁特性的新型组件拓扑结构及其内嵌无源电路、互连实现形式,利用在空间映射研究中取得的成果和开发的实用技术,实现LTCC电路的优化,主要是采用初始空间映射方法优化设计了LTCC电容电感、采用主动空间映射方法LTCC过渡、采用基于知识主动空间映射方法与神经网络空间映射方法优化设计了LTCC等效集总元件滤波器等。

Accomplishing system topological structure design, off-chip memory space was expanded, CAN bus and distributed control network was realized.

在系统拓扑结构设计的基础上,实现了DSP片外存储单元的扩展,实现了通过CAN总线与整车分布式控制网络的通讯。

And resolve the fault, only to upgrade to the router, such as extended memory, or re-planning of the network topology.

而解决这种故障,只有对路由器进行升级、扩内存等,或者重新规划网络的拓扑结构。

During the clustering formation,it fully considers the underlying network topological properties and avoids all possible data packet delivering on costly links to reduce multicast delayIn addition,group members are constructed to an efficient Fibonacci multicast tree utilizing a novel multicast algorithm based on Fibonacci Series,and the tree is used to carry on the intragroup multicast.

HFTM通过分层和分群的思想将所有组播组成员构造成一个特殊的层次化结构,在进行群划分时,充分考虑了底层网络拓扑特征,尽量避免数据包在代价昂贵的链路上进行传输,从而减少组播延迟。另外,采用一种新颖的基于斐波那契序列的组播算法将群内成员构造成一棵高效的斐波那契组播树,利用此树进行群内组播。

In order to address these problems, it is necessary to be able to dynamically design and record the topology of a network.

为了解决这个问题,有必要能够动态地设计和记录网络的拓扑结构。

Our focus is on regimes away from the complete synchronization state, when the coupling is not strong enough, when the oscillators are under the influence of noise or when the oscillators are nonidentical.

所以是否可以将我们研究的对象分为这么两层次:复杂系统是第一层、复杂网络与动力系统是第二层,这一层是拓扑结构与单一结点动力学。

Moreover, a kind of new implemented AODV shema is launched to optimize the route selecting method, basing on wirless routing protocol AODV and making use of the information of hop counting. Thus, what has been done is in the purpose of adapting topology of the continuously dynamic network.

在已有的无线路由AODV协议的基础上,通过利用记录DSR路由请求信息中的跳数等参数信息来对路径选择进行优化,最后确定实际数据传输的路径,通过优化网络路由可以适应拓扑结构的动态变化。

The computer network subsystem is designed ethernet which is star connection structure.

网络系统采用以太组网方案,为星型连接拓扑结构设计。

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The split between the two groups can hardly be papered over.

这两个团体间的分歧难以掩饰。

This approach not only encourages a greater number of responses, but minimizes the likelihood of stale groupthink.

这种做法不仅鼓励了更多的反应,而且减少跟风的可能性。

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