协同无线传感器网络中的能量平衡

L. Bai, Lian Zhao, Z. Liao
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引用次数: 20

摘要

无线传感器网络(WSNs)的设计应注重能源效率,因为无线传感器节点使用有限的电池,在大多数情况下难以或不可能更换电池。然而,无线传感器网络的性能受到衰落效应的不利影响,这需要大量的能量来对抗高误码率(BER)的要求。另一方面,由于发射能量与发射距离成正比,因此与基站(BS)的距离不同导致能量不平衡。远离传感器网络的传感器节点比靠近传感器网络的传感器节点消耗更多的能量,并且可能会迅速消亡,从而缩短传感器网络的寿命或导致其故障。降低传输能量占总能量消耗的比例有助于最小化传感器节点之间的传输能量差异。合作传输通过获取分集增益来降低传输能量,是对抗衰落影响的有效方法。在本文中,我们首先将协作传输应用到WSNs中,不仅降低了能量消耗,而且减小了传感器节点之间的能量消耗差异。为了进一步平衡传感器节点之间的能量,我们采用了不同的簇大小,仿真结果表明,不均匀的簇大小可以改善能量平衡。
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Energy balance in cooperative Wireless Sensor Network
The design of wireless sensor networks (WSNs) should focus on energy efficiency since wireless sensor nodes work on limited batteries, which are difficult or impossible to replace in most situations. However, the performance of WSNs is adversely impacted by fading effects, which requires much energy to combat for a high bit error rate (BER) requirement. On the other hand, since the transmit energy is proportional to transmit distance, energy imbalance is caused by the different distances to the base station (BS). Sensor nodes far from the BS consume much more energy than those close to the BS and may die out quickly, which shortens the lifetime or results in a malfunction of the WSN. Reducing the proportion of transmit energy in total energy consumption helps minimize the differences in transmit energy among sensor nodes. Cooperative transmission has been proven to be an effective way to combat the impacts of fading by obtaining diversity gains and therefore, reduces the transmit energy. In this paper, we first apply cooperative transmission in WSNs, which not only reduces energy consumption but also lessens the differences of energy consumption among sensor nodes. To further balance energy among sensor nodes, we apply different cluster size and simulation results show that unequal cluster size improves energy balancing.
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