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首页> 外文期刊>Journal of Low Power Electronics >Accurate Energy-Aware Workload Distribution for Wireless Sensor Networks Using a Detailed Communication Energy Cost Model
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Accurate Energy-Aware Workload Distribution for Wireless Sensor Networks Using a Detailed Communication Energy Cost Model

机译:使用详细的通信能耗模型,用于无线传感器网络的准确的能源意识工作量分配

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Wireless Sensor Networks (WSNs) have gained a lot of attention from the research and industrial communities. In almost any application involving WSNs, energy efficiency is a primary concern. As the complexity of the motes and the applications increases (e.g., in-network DSP processing, internet-of-the-things), the energy of communication and computation processes have to be considered and optimized simultaneously. In this work, we propose an offline workload distribution approach based on integer linear programming (ILP) to reduce the energy consumption and extend the network lifetime for cluster-based WSNs. It takes communication and computation energy into account, employs a novel and detailed model for the communication cost, and provides optimal partitions for both symmetrical and asymmetrical networks. The experimental results confirm that the novel communication model can be applied to both CDMA and TDMA based MAC protocols with high accuracy. The estimated communication cost (approx. 10% deviation) is more accurate than the one employed in the previous works on partitioning (over 85% deviation). The incorporation of the accurate communication model into the workload distribution problem produces better partition result that reduces the energy cost by 16.8%. The economized execution time (less than 1 second) makes the ILP approach feasible for typical WSN applications and guarantees the optimality of the energy-aware partition.
机译:无线传感器网络(WSN)受到了研究界和工业界的广泛关注。在几乎所有涉及WSN的应用中,能源效率都是首要考虑的问题。随着节点和应用程序的复杂性增加(例如,网络内DSP处理,物联网),必须同时考虑和优化通信和计算过程的能量。在这项工作中,我们提出了一种基于整数线性规划(ILP)的离线工作负载分配方法,以减少能耗并延长基于集群的WSN的网络寿命。它考虑了通信和计算能力,采用了新颖而详细的通信成本模型,并为对称和非对称网络提供了最佳的分区。实验结果证实,该新型通信模型可以高精度地应用于基于CDMA和TDMA的MAC协议。估计的通信成本(大约10%的偏差)比以前的分区工作(偏差超过85%)中的准确度更高。将准确的通信模型整合到工作负载分配问题中可以产生更好的分区结果,从而将能源成本降低16.8%。节省的执行时间(不到1秒)使ILP方法对于典型的WSN应用程序可行,并保证了能量感知分区的最佳性。

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