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Power-Aware Relay Selection and Routing Scheme for Multi-Interface Sensor Networks

机译:多接口传感器网络的功率感知中继选择和路由方案

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摘要

We present a joint relay and radio interface selection algorithm with packet deadline under limited power usage in multi-interface sensor networks. We find route optimization techniques in multi-interface networks: 1) selecting the most conservatively lowest-power interface to guarantee timely transmission considering the remaining hops to destination, and 2) searching detouring paths when the power level of an involved relay node is too low to use the necessary interface that guarantees timely delivery. We aim to achieve data delivery with packet deadline requirement while minimizing energy consumption at each node, and further prolonging network lifetime by selecting cost-effective relay nodes and wireless interfaces. We evaluate our proposed algorithm in terms of total power consumption and packet delivery performance, compared to homogeneous radio interface scenarios of only Wi-Fi interface and only 802.15.4 ZigBee interface. Simulation results show that the proposed algorithm fully exploits the given packet delivery time to conserve power consumption by selecting the interface that consumes the least power, and spreading out network traffic over the network. Our proposed algorithm achieves reliable packet delivery without "delivery failures due to power outage and missed deadline.
机译:在多接口传感器网络中,我们提出了一种在功率受限的情况下具有分组截止期限的联合中继和无线电接口选择算法。我们发现了多接口网络中的路由优化技术:1)选择最保守的最低功率接口,以考虑到目标的剩余跳数来保证及时传输,以及2)当涉及的中继节点的功率水平太低时搜索绕行路径使用保证及时交付的必要接口。我们的目标是通过选择具有成本效益的中继节点和无线接口,在满足数据包期限要求的同时实现数据传输,同时将每个节点的能耗降至最低,并进一步延长网络寿命。与仅Wi-Fi接口和仅802.15.4 ZigBee接口的同类无线电接口场景相比,我们在总功耗和数据包传递性能方面评估了我们提出的算法。仿真结果表明,该算法通过选择功耗最小的接口,并通过网络分配网络流量,从而充分利用给定的数据包传递时间来节省功耗。我们提出的算法可实现可靠的数据包传送,而不会出现“由于停电和错过期限而导致的传送失败。

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