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mSCTP P2P (2-layered CHORD) supported decentralized seamless mobility framework

机译:mSCTP和P2P(两层CHORD)支持分散式无缝移动框架

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To get overall advantages of the omnipresent mobile computing, Mobile Node (MN) should be capable to move seamlessly through various networks. But the Internet Protocol (IP) address of the remote Mobile Nodes should be considered in specific time duration, prior to the blockage of services. In 3G, 4G and LAN technologies, it is needed to have a proficient system for location management that accepts the dynamic environments and add issues as failure based on central point, latency and deficiency of consistency. One way is to utilize CHORD for location management that is decentralized, and its key value mapping should better consider to IP mapping, the desired name. But the main problem regarding this mechanism is the existence of chord nodes that are not stable, and this creates instability in the framework. Nodes having low computation abilities can retard the look-up technique and thus ends the active session. Here we give a solution to the issue, utilizing two-layered CHORD design against single Layered CHORD. Nodes having high computation capabilities and stability will perform as location servers, and will be liable for saving and allocation the temporary locators that is IP address of the remote MN. Appropriation of suggested framework is analyzed utilizing analytical analysis in distinguished with current CHORD mobility protocol. The said way can stabilizes the framework using its de-centralizing feature, yet intact.
机译:为了获得无所不在的移动计算的整体优势,移动节点(MN)应该能够在各种网络之间无缝移动。但是在阻塞服务之前,应在特定的持续时间内考虑远程移动节点的Internet协议(IP)地址。在3G,4G和LAN技术中,需要有一个精通的位置管理系统,该系统可以接受动态环境,并根据中心点,延迟和一致性不足而增加诸如故障之类的问题。一种方法是将CHORD用于分散的位置管理,并且其键值映射应更好地考虑IP映射(所需名称)。但是,有关此机制的主要问题是存在不稳定的和弦节点,这会在框架中造成不稳定。计算能力低的节点可能会延迟查找技术,从而结束活动会话。在这里,我们针对单层CHORD利用两层CHORD设计来解决该问题。具有高计算能力和稳定性的节点将充当位置服务器,并负责保存和分配作为远程MN的IP地址的临时定位符。建议的框架是否使用分析方法进行分析,以区别于当前的CHORD移动性协议。所述方式可以使用其去中心化功能来保持框架的稳定,但仍保持原样。

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