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Exploiting Data-Dependent Transmission Control and MAC Timing Information for Distributed Detection in Sensor Networks

机译:利用数据相关的传输控制和MAC定时信息进行传感器网络中的分布式检测

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In this paper, we propose a data-dependent transmission control policy over the slotted ALOHA MAC protocol and a cross-layered fusion rule that exploits MAC timing information for distributed detection in sensor networks. In this system, each sensor first makes a local decision at the beginning of each observation period and transmits the decision to the fusion center over a random access channel. Based on the slotted ALOHA random access protocol, we propose a class of data-dependent transmission control policies that assign to sensors their transmission probabilities according to the reliability of their local decisions. For the case with i.i.d. observations in each time slot, we show that the optimal transmission control function takes on the form of a thresholding function. That is, a sensor will transmit in a given time slot if and only if its local log-likelihood ratio exceeds a certain threshold. When observations are made only every several time slots, the message arrival time at the fusion center, which is spread over the observation period of duration K > 1, will embed the reliability of the received sensors' decisions as a result of the data-dependent transmission control. This timing information can be accounted for in the fusion rule to further enhance performance. Finally, we extend the proposed strategies to multicluster sensor network scenarios, where the sensors' local decisions are transmitted to the fusion center in a two-hop fashion. We show, through numerical simulations, that the proposed schemes outperform both conventional slotted ALOHA and TDMA-based schemes that do not adopt cross-layered transmission and fusion strategies.
机译:在本文中,我们提出了基于时隙ALOHA MAC协议的数据相关传输控制策略,以及一种利用MAC时序信息进行传感器网络中分布式检测的跨层融合规则。在该系统中,每个传感器首先在每个观察周期的开始做出本地决策,然后通过随机访问信道将决策发送到融合中心。基于带时隙的ALOHA随机访问协议,我们提出了一类与数据相关的传输控制策略,该策略根据传感器本地决策的可靠性将其传输概率分配给传感器。对于i.i.d.在每个时隙中的观察,我们表明最优的传输控制函数采用阈值函数的形式。也就是说,当且仅当其本地对数似然比超过某个阈值时,传感器才会在给定的时隙中发送。当仅每几个时隙进行一次观察时,融合中心的消息到达时间(其分布在持续时间K> 1的观察周期内)将嵌入接收到的传感器决策的可靠性,这取决于数据传输控制。可以在融合规则中考虑该定时信息,以进一步增强性能。最后,我们将提出的策略扩展到多集群传感器网络方案,在该方案中,传感器的本地决策以两跳方式传输到融合中心。通过数值模拟,我们表明,所提出的方案优于不采用跨层传输和融合策略的常规时隙ALOHA和基于TDMA的方案。

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