基于现场重建的移动传感器自适应随机存取

Jinho Choi, M. Jeon
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引用次数: 0

摘要

在无线传感器网络(WSN)中,当传感器数量变化时,我们考虑了一种自适应方案来确定随机访问的访问概率,以重建目标域(即二维过程)。特别地,我们考虑移动传感器单元(msu),即汽车或无人机(uav)上的传感器单元,通过估计msu的数量,在由多个时隙组成的会话中自适应地确定访问概率。AP (access point)是用来估计发送序文的msu的数量,并反馈这些信息,以便msu确定它们的访问概率,从而最大限度地提高吞吐量。仿真结果表明,尽管初始估计的msu总数过高,但所提出的自适应方案可以提供接近最优的吞吐量。
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Adaptive Random Access for Mobile Sensors Based Field Reconstruction
We consider an adaptive scheme to determine the access probability for random access when the number of sensors is varying in a wireless sensor network (WSN) to reconstruct a target field (i.e., a 2-dimensional process). In particular, we consider mobile sensor units (MSUs) that are sensor units on cars or unmanned aerial vehicles (UAVs), The access probability is adaptively decided within a session that consists of multiple time slots by estimating the number of MSUs. An access point (AP) is to estimate the number of the MSUs that transmit preambles and fed back this information so that the MSUs can determine their access probability to maximize the throughput. Simulation results confirm that the proposed adaptive scheme can provide a near optimal throughput although the initial estimate of the total number of MSUs is overestimated.
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