Mobile communication system, router, mobile node, and mobile communication method.
移动通信系统,路由器,移动节点和移动通信方法。
Mobile node, router, server and method for mobile communications under IPV6 protocol.
移动节点,路由器,服务器和根据IP版本6 (IPV6)协议的移动通信的方法。
In such a network, each mobile node operates not only as a host but also as a router.
它无需固定的基站与基干网,网络中每个节点既充当主机又充当路由器。
In SCTP, the multi-homing feature enables the mobile node to handover seamlessly between networks.
在SCTP中,多归位功能,使移动节点到网络之间的无缝交接。
It provides a kind IP route mechanism that makes mobile node connect to any links with a permanent IP address.
它提供了一种ip路由机制,使移动节点可以以一个永久的IP地址连接到任何链路上。
This paper focuses on developing a new high precision finite element method by combining ordinary linear element and mobile node.
着重于开发一种以常规线性单元为基底,附加中间移动节点而构成的新型高精度的复合有限单元方法。
How to realize fast and smooth handoff of mobile node between subnets, i. e. seamless handoff, is a key problem of mobile computing.
如何实现移动节点在子网间快速、平滑的切换,即无缝切换,是移动计算的一个重要问题。
In the transition period, the mobile node cannot affirm its attachment to the new subnet until it connects to the new subnet stably.
针对乒乓移动问题,引入过渡期的概念,过渡期内移动节点同新子网连接稳定才可以确认到达新子网;
Private addresses can be used in the foreign agent hierarchy while not revealing it to the mobile node providing a privacy of hierarchy.
私有地址在外地分层代理可以使用,并且不需要向移动接点说明这种分层结构的外地代理。
Channel changes in the irregular nature of the mobile node, adding or withdrawal from the network topology can also lead to other changes.
无线信道变化的不规则性、节点的移动、加入、退出等都会引起网络拓扑结构的动态变化。
Analysis shows that compared with the existing single-layer management, SIP-MIP has a lower signaling overhead, and can better support the mobile node.
分析表明,与现有单层移动管理相比,SIP -MIP具有较低的信令开销,可以更好的支持节点的移动。
A design scheme of a mobile node based on ARM micro-processor is introduced in this paper. The principle graphic of hardware based on LPC2214 is presented.
介绍了基于ARM微控制器的移动传感节点的设计方案,给出了以LPC 2214为核心的硬件设计的原理框图。
According to original mobile IP protocol, each time mobile node changes its Foreign Agent, it must register to its Home Agent and correspondent node again.
根据原移动IP协议,移动节点每次变换了转交地址,都必须向家乡代理和通信对端重新绑定。
Mobile Ad Hoc Network( MANET) is a type of mobile wireless networks composed of many mobile nodes. Each node is a router as well asa communication end-point.
自组网是由兼做路由器的移动节点组成的移动无线网络,不依靠通信基础设施。
The scheme realizes the incorporation of authentication and registration. Key distribution among mobile node, foreign agent and home agent is also achieved in the scheme.
该方案实现了认证和注册过程的一体化,并且实现了移动节点、外地代理和家乡代理三个实体间的密钥分配。
Commonly, the home agent is a router in the home link of the mobile node, the mainly effect of which is transmitting the packets from other nodes to the roaming mobile node.
家乡代理是移动节点家乡链路上的一台路由器,它的作用主要是帮助移动节点在家乡链路上接收其他节点发给移动节点的数据包,然后将数据包转发给已经在外地漫游的移动节点。
Hash Marking method was proposed to mark the mobile node and to ensure the security of authorization. In addition, pre-authentication method was used to reduce hand-off time.
为了保证授权过程的安全,设计了一种散列码标识的方案,作为接入点识别移动台的根据,同时采用提前认证等手段提高切换过程的速度。
Secure and seamless roaming between internal and external networks, switching between double and triple tunnel, and protecting communication between home agent and mobile node.
在内部和外部网络间进行安全和无缝漫游,在双重和三重隧道间切换,以及保护归属代理和移动节点间的通信。
The transmit agent acts as a buffer when the mobile node goes handoffs and reduces the overheads as same as the number of the hosts along the changing road which need to change.
在移动主机切换链路的时候,中转代理起到缓存的作用,可以减少所需要更改的路径的节点数量,同时减少切换开销。
On the basis of the prediction information of the mobile node, the mechanism produced dynamic policies automatically to do admission control and prepared resources for handoff before it happened.
该机制根据移动节点相关预测信息自动生成动态策略,在切换前作准入控制和资源准备。
A mobile node can always communicate with other nodes via its home address whether it is on its home link or foreign link, and the connections of transport layer and higher layer will not be broken.
不论移动节点位于家乡网络还是外地网络,它都可以使用家乡地址和其他节点相互通讯,这样传输层和更高层的连接不会被打断。
Is based on the n-tier model and supports browser users (client node) and mobile users (pervasive user node) accessing back-end applications.
基于n层模型,支持浏览器用户(client节点)和移动用户(pervasiveuser节点)访问后端应用程序。
The Active Services Node has an autonomous mobile computing and the capacity to deliver services.
主动服务结点既是服务的提供者,又是服务的使用者,具有自主移动计算和提供服务能力。
Therefore, this thesis proposes an adaptive distance filter that can effectively reduce communication traffic between the mobile grid node and grid broker.
本文提出了用自适应距离过滤来有效减少移动节点和网格代理之间的通信机制。
Aiming at the issue of the performance of routing protocols in Mobile Ad Hoc Network affected by node density, relativity of routing efficiency and node density is studied.
针对移动自组网路由协议的性能受到节点密度影响的问题,研究路由效率与节点密度的相关性。
The Active services Node is the services provider and the services user also. The Active services Node has an autonomous mobile computing and the capacity to deliver services.
主动服务结点既是服务的提供者,又是服务的使用者,具有自主移动计算和提供服务能力。
A problem addressed is the complexity imposed by a soft handover combination node in the network for combining packets received from one mobile station over parallel diversity links.
提出的一个问题是由网络中用于组合通过并行分集链路从一个移动台接收的分组的软切换组合节点造成的复杂性。
After switching, mobile hosts must find a shortest route to establish connection with correspondence node.
切换之后移动主机必须尽快找到一条最短路径路由与通信对端建立连接。
This paper adopts mobile anchor node combining PBCC algorithm, and proposes a self-localization algorithm with low energy consumption and high precision.
本文采用移动锚节点并结合PBCC算法,提出一种复杂度低、精度高的节点自身定位改进算法。
This paper adopts mobile anchor node combining PBCC algorithm, and proposes a self-localization algorithm with low energy consumption and high precision.
本文采用移动锚节点并结合PBCC算法,提出一种复杂度低、精度高的节点自身定位改进算法。
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