Optimal sinks deployment and packet scheduling for Wireless Sensor Networks

N. Achir, P. Mühlethaler
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Abstract

In this paper we propose an optimal deployment and distributed packet scheduling of multi-sink Wireless Sensors networks (WNSs). This work is devoted to computing the optimal deployment of sinks for a given maximum number of hops between nodes and sinks. We also propose an optimal distributed packet scheduling in order to estimate the minimum energy consumption. We consider the energy consumed due to reporting, forwarding and overhearing. In contrast to reporting and forwarding, the energy used in overhearing is difficult to estimate because it is dependent on the packet scheduling. In this case, we determine the lower-bound of overhearing, based on an optimal distributed packet scheduling formulation. We also propose another estimation of the lower-bound in order to simulate non interfering parallel transmissions which is more tractable in large networks. We note that overhearing largely predominates in energy consumption. A large part of the optimizations and computations carried out in this paper are obtained using ILP formalization.
无线传感器网络的最优汇聚部署和分组调度
本文提出了一种多汇聚无线传感器网络(WNSs)的优化部署和分布式分组调度方法。本工作致力于计算在给定节点和汇合点之间最大跳数的汇合点的最佳部署。为了估计最小的能量消耗,我们还提出了一种最优的分布式分组调度方法。我们考虑由于报告、转发和偷听所消耗的能量。与报告和转发相比,侦听中使用的能量很难估计,因为它依赖于数据包调度。在这种情况下,我们根据最优的分布式分组调度公式确定侦听的下界。我们还提出了另一种下界估计,以模拟在大型网络中更易于处理的无干扰并行传输。我们注意到,偷听在能源消耗中占很大比例。本文所进行的大部分优化和计算都是使用ILP形式化进行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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