Performance analysis of probabilistic transmission control for distributed estimation in wireless sensor networks

S. Narieda
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引用次数: 3

Abstract

This paper presents a probabilistic transmission control technique for the distributed estimation in WSNs. The presented technique is based on a novel transmission control which is to minimize a mean squared error of estimation by increasing the packet transmission success probability of only sensors having the high observation SNR. In the presented method, the transmission of sensors is probabilistically decided whether the SNR of sensor is greater than the threshold whereas the transmission of sensors is deterministically decided in the conventional method. To achieve the presented method, we introduce a probabilistic transmission control function that gives each sensor a probabilistic value (from 0 to 1) as the transmission probability. Also, since the presented method can allows sensors to retransmit messages, it can be expected that the reliability of estimate increases. We employed the collision channel model where the transmission from the sensor to the FC is successful only when no other sensors are transmitting in the same time slot. Also, we assume that each sensor observe unknown at the beginning of the limited observation period, and each sensor can transmits observation only the limited retransmission time. Based on the model, theoretical packet transmission success probability of the presented and conventional method is derived. Numerical results are presented to valid the effectiveness of the presented method.
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无线传感器网络中分布式估计的概率传输控制性能分析
提出了一种用于无线传感器网络分布式估计的概率传输控制技术。该技术基于一种新颖的传输控制,即通过增加仅具有高观测信噪比的传感器的数据包传输成功率来最小化估计的均方误差。在该方法中,传感器的传输是概率决定传感器信噪比是否大于阈值,而传统方法是确定性决定传感器的传输。为了实现所提出的方法,我们引入了一个概率传输控制函数,该函数为每个传感器提供一个概率值(从0到1)作为传输概率。此外,由于所提出的方法可以允许传感器重传消息,可以预期,估计的可靠性提高。我们采用碰撞信道模型,只有当没有其他传感器在同一时隙中传输时,传感器到FC的传输才会成功。同时,我们假设每个传感器在有限的观测周期开始时观测未知,每个传感器只能在有限的重传时间内传输观测。在此基础上,推导了该方法与传统方法的理论数据包传输成功率。数值结果验证了所提方法的有效性。
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