Information and Communication Department/Ajou University, South Korea; E-Mails:
Sensors (Basel). 2009;9(7):5844-77. doi: 10.3390/s90705844. Epub 2009 Jul 23.
Mobility in 6LoWPAN (IPv6 over Low Power Personal Area Networks) is being utilized in realizing many applications where sensor nodes, while moving, sense and transmit the gathered data to a monitoring server. By employing IEEE802.15.4 as a baseline for the link layer technology, 6LoWPAN implies low data rate and low power consumption with periodic sleep and wakeups for sensor nodes, without requiring them to incorporate complex hardware. Also enabling sensor nodes with IPv6 ensures that the sensor data can be accessed anytime and anywhere from the world. Several existing mobility-related schemes like HMIPv6, MIPv6, HAWAII, and Cellular IP require active participation of mobile nodes in the mobility signaling, thus leading to the mobility-related changes in the protocol stack of mobile nodes. In this paper, we present LoWMob, which is a network-based mobility scheme for mobile 6LoWPAN nodes in which the mobility of 6LoWPAN nodes is handled at the network-side. LoWMob ensures multi-hop communication between gateways and mobile nodes with the help of the static nodes within a 6LoWPAN. In order to reduce the signaling overhead of static nodes for supporting mobile nodes, LoWMob proposes a mobility support packet format at the adaptation layer of 6LoWPAN. Also we present a distributed version of LoWMob, named as DLoWMob (or Distributed LoWMob), which employs Mobility Support Points (MSPs) to distribute the traffic concentration at the gateways and to optimize the multi-hop routing path between source and destination nodes in a 6LoWPAN. Moreover, we have also discussed the security considerations for our proposed mobility schemes. The performance of our proposed schemes is evaluated in terms of mobility signaling costs, end-to-end delay, and packet success ratio.
在实现许多应用程序时,利用 6LoWPAN(IPv6 over Low Power Personal Area Networks)中的移动性,传感器节点在移动时感知并将收集的数据传输到监控服务器。通过将 IEEE802.15.4 用作链路层技术的基准,6LoWPAN 意味着低数据速率和低功耗,同时传感器节点定期进入睡眠和唤醒状态,而无需它们集成复杂的硬件。同时,为传感器节点提供 IPv6 还确保可以从世界任何地方随时访问传感器数据。现有的一些与移动性相关的方案,如 HMIPv6、MIPv6、HAWAII 和 Cellular IP,需要移动节点积极参与移动性信令,从而导致移动节点协议栈中的移动性相关更改。在本文中,我们提出了 LoWMob,这是一种用于移动 6LoWPAN 节点的基于网络的移动性方案,其中移动 6LoWPAN 节点的移动性在网络侧进行处理。LoWMob 借助 6LoWPAN 内的静态节点确保了网关和移动节点之间的多跳通信。为了减少静态节点支持移动节点的信令开销,LoWMob 在 6LoWPAN 的适配层提出了一种移动性支持分组格式。我们还提出了 LoWMob 的分布式版本,称为 DLoWMob(或分布式 LoWMob),它使用 Mobility Support Points(MSPs)在网关之间分配流量集中,并优化 6LoWPAN 中源和目标节点之间的多跳路由路径。此外,我们还讨论了我们提出的移动性方案的安全考虑。我们提出的方案的性能是根据移动性信令成本、端到端延迟和分组成功率来评估的。