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An Adaptive Strategy for an Optimized Collision-Free Slot Assignment in Multichannel Wireless Sensor Networks

机译:在多通道无线传感器网络中优化无冲突插槽分配的自适应策略

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Convergecast is the transmission paradigm used by data gathering applications in wireless sensor networks (WSNs). For efficiency reasons, a collision-free slotted medium access is typically used: time slots are assigned to non-conflicting transmitters. Furthermore, in any slot, only the transmitters and the corresponding receivers are awake, the other nodes sleeping in order to save energy. Since a multichannel network increases the throughput available to the application and reduces interference, multichannel slot assignment is an emerging research domain in WSNs. First, we focus on a multichannel time slot assignment that minimizes the data gathering delays. We compute the optimal time needed for a raw data convergecast in various multichannel topologies. Then, we focus on how to adapt such an assignment to dynamic demands of transmissions (e.g., alarms, temporary additional application needs and retransmissions). We formalize the problem using linear programming, and we propose an incremental technique that operates on an optimized primary schedule to provide bonus slots to meet new transmission needs. We propose AMSA, an Adaptive Multichannel Slot Assignment algorithm, which takes advantage of bandwidth spatial reuse, and we evaluate its performances in terms of the number of slots required, slot reuse, throughput and the number of radio state switches.
机译:聚合广播是无线传感器网络(WSN)中数据收集应用程序使用的传输范例。出于效率原因,通常使用无冲突的时隙媒体访问:将时隙分配给无冲突的发射机。此外,在任何时隙中,只有发射机和相应的接收机处于苏醒状态,其他节点处于睡眠状态以节省能量。由于多通道网络增加了可用于应用程序的吞吐量并减少了干扰,因此多通道时隙分配是WSN中新兴的研究领域。首先,我们关注于多通道时隙分配,该分配可最大程度地减少数据收集延迟。我们计算在各种多通道拓扑中汇聚原始数据所需的最佳时间。然后,我们专注于如何使这种分配适应传输的动态需求(例如,警报,临时的其他应用需求和重新传输)。我们使用线性规划对问题进行形式化,并提出了一种在优化的主计划上运行的增量技术,以提供额外的时段来满足新的传输需求。我们提出AMSA,一种自适应多信道时隙分配算法,该算法利用带宽空间复用,并根据所需的时隙数量,时隙复用,吞吐量和无线状态切换数量评估其性能。

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