MobiBone: An energy-efficient and adaptive network protocol to support short rendezvous between static and mobile wireless sensor nodes

Kui Zhang, E. D. Ayele, N. Meratnia, P. Havinga, Peng Guo, Youxin Wu
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引用次数: 1

Abstract

To ensure long network life-time, the duty-cycle of wireless sensor networks is often set to be low. This brings with itself the risk of either missing a sent packet or delaying the message delivery and dissemination depending on the duration of the duty-cycle and number of hops. This risk is increased in wireless sensor applications with hybrid architecture, in which a static ground wireless sensor network interacts with a network of mobile sensor nodes. Dynamicity and mobility of mobile nodes may lead to only a short rendezvous between them and the backbone network to exchange data. Additionally, such dynamicity generates complex and often random data traffic patterns. To support successful data delivery in case of short rendezvous between static and mobile wireless sensor nodes, we propose MobiBone, an energy-efficient and adaptive network protocol that utilizes data packet traffic to characterize the sleep schedule. Our simulation results show that compared with network protocols with fixed duty-cycles, MobiBone offers a good trade-off between energy consumption, latency, and detection rate of mobile nodes (which indicates awakens of the backbone network at crucial times of mobile node presence).
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MobiBone:一种节能的自适应网络协议,支持静态和移动无线传感器节点之间的短时间会合
为了保证较长的网络使用寿命,无线传感器网络的占空比通常设置得较低。这本身就带来了丢失发送数据包或延迟消息传递和分发的风险,这取决于占空比的持续时间和跳数。这种风险在具有混合架构的无线传感器应用中增加,其中静态地面无线传感器网络与移动传感器节点网络交互。移动节点的动态性和移动性可能导致它们与骨干网之间只有很短的交会时间来交换数据。此外,这种动态性会生成复杂且通常是随机的数据流量模式。为了在静态和移动无线传感器节点之间的短时间集合情况下支持成功的数据传输,我们提出了MobiBone,这是一种节能且自适应的网络协议,它利用数据包流量来表征睡眠时间表。我们的仿真结果表明,与固定占空比的网络协议相比,MobiBone在能量消耗、延迟和移动节点的检测率(表明在移动节点存在的关键时刻骨干网的唤醒)之间提供了很好的权衡。
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