6LoWPAN的能量感知和带宽高效移动架构

G. Bag, Muhammad Taqi Raza, Hamid Mukhtar, Ali Hammad Akbar, S. Shams, Ki-hyung Kim, S. Yoo, Donghwan Kim
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引用次数: 20

摘要

本文提出了一种能量感知和带宽高效的移动性支持架构,该架构处理6LoWPAN设备的移动性,使其与相应节点之间的通信保持不中断。由于6LoWPAN设备的能源和资源受到限制,因此在这些设备中使用传统的基于主机的协议(如MIPv6)来实现移动性是不合适的。此外,在许多情况下,移动节点(MN)在与网关(GW)通信时可能会远离网关(MN)。在这种情况下,MN必须增加其传输功率,这可能会对其寿命产生不利影响。在所提出的架构中,静态随机部署的6LoWPAN设备(SN)具有与MN相同的特性,便于移动性,使MN的IP连通性在MNpsilas端以最少的信令保持。因此,本文描述了SN和MN之间所需的链路层特定机制,以帮助它与GW进行多跳通信。此外,它的设计考虑到SNs本身的能量和资源约束性质。SNs的信令开销通过分析建模确定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy-aware and bandwidth-efficient mobility architecture for 6LoWPAN
This paper proposes an energy aware and bandwidth efficient mobility support architecture which handles mobility of 6LoWPAN devices, such that the communication between it and its corresponding nodes remain undisrupted. As the 6LoWPAN devices are energy and resource constrained enabling mobility in these devices with the help of conventional host based protocols like MIPv6 is not suitable. Moreover, it may be possible in many scenarios that the mobile node (MN) moves far from the gateway (GW), while communicating with it. In this case the MN has to increase its transmission power, which may adversely affect its life time. In the proposed architecture static random deployed 6LoWPAN devices (SN) with same characteristics as the MNs, facilitate mobility such that the IP connectivity of the MN is maintained with minimum signaling at MNpsilas end. Thus this paper describes the link layer specific mechanisms needed between the SN and the MN to help it perform multi-hop communication with the GW. Moreover, it is designed keeping in mind the energy and resource constraint nature of SNs themselves. The signaling overhead for the SNs is determined through analytical modeling.
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