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Battery allocation for wireless sensor network lifetime maximization under cost constraints

机译:在成本约束下最大化无线传感器网络寿命的电池分配

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Wireless sensor networks hold the potential to open new domains to distributed data acquisition. However, such networks are prone to premature failure because some nodes deplete their batteries more rapidly than others due to workload variations, non-uniform communication, and heterogenous hardware. Many-to-one traffic patterns are common in sensor networks, further increasing node power consumption heterogeneity. Most previous sensor network lifetime enhancement techniques focused on balancing power distribution, based on the assumption of uniform battery capacity allocation among homogeneous nodes. This paper gives a formulation and solution to the cost-constrained lifetime-aware battery allocation problem for sensor networks with arbitrary topologies and heterogeneous power distributions. An integer nonlinear programming formulation is given. Based on an energy-cost battery pack model and optimal node partitioning algorithm, a rapid battery pack selection heuristic is developed and its deviation from optimality is quantified. Experimental results indicate that the proposed technique achieves network lifetime improvements ranging from 3–11× compared to uniform battery allocation, with no more than 10 battery pack energy levels. The proposed technique achieves 2–5 orders of magnitude speedup compared to a general-purpose commercial nonlinear program solver, solution quality improves, and little approximation error is observed. Categories and Subject Descriptors H.4 [Information Systems Applications]: Miscellaneous; D.2.8 [Software Engineering]: Metrics-complexity measures, performance measures General Terms Wireless Communication, Resource Allocation
机译:无线传感器网络具有为分布式数据采集打开新领域的潜力。但是,由于某些节点由于工作负载变化,通信不均匀和硬件异构而比其他节点更快耗尽电池,因此此类网络易于过早失效。多对一流量模式在传感器网络中很常见,从而进一步增加了节点功耗的异构性。以前的大多数传感器网络寿命增强技术都基于均质节点之间均匀的电池容量分配的假设,着重于平衡功率分配。本文针对具有任意拓扑和异构电源分配的传感器网络,提出了一种解决成本受限,使用寿命有限的电池分配问题的方案和解决方案。给出了整数非线性规划公式。基于能量成本电池组模型和最优节点划分算法,开发了一种快速的电池组选择启发式方法,并量化了其偏离最优性的情况。实验结果表明,与统一的电池分配相比,所提出的技术可将网络寿命提高3-11倍,并且电池组的能量级别不超过10个。与通用的商用非线性程序求解器相比,所提出的技术实现了2-5个数量级的加速,解决方案质量提高了,并且几乎没有观察到近似误差。类别和主题描述符H.4 [信息系统应用]:其他;其他D.2.8 [软件工程]:度量复杂性度量,性能度量通用术语无线通信,资源分配

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