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An Energy Efficient Communication Scheme for Distributed Computing Applications in Wireless Sensor Networks

机译:无线传感器网络中分布式计算应用的节能通信方案

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We propose a new energy efficient communication scheme for multi-hop wireless sensor networks (WSNs). Our run-zero encoding (RZE) communication scheme utilizes the concepts of the RBNSiZeComm protocol introduced in [1,3,2]. However, unlike RBNSiZeComm, RZE simultaneously saves energy at both the transmitter and receiver. Also, maintaining synchronization between transmitter and receiver is easier in RZE. Implementation of RZE is based on the transceiver design proposed in [1] that uses a hybrid modulation scheme involving FSK and ASK to keep the cost/complexity of the radio device low. With this non-coherent detection based receiver and assuming equal likelihood of all possible binary strings of a given length, we show that there is a 35.2% savings in energy on an average at the transmitter compared to binary FSK, for additive white gaussian noise (AWGN) channels. Simultaneously, the receiver experiences a savings of 12.5% on an average. These results establish the utility of RZE as a suitable candidate for communication in wireless sensor networks in order to enable distributed computing applications.
机译:我们提出了一种用于多跳无线传感器网络(WSN)的新型节能通信方案。我们的零运行编码(RZE)通信方案利用了[1,3,2]中引入的RBNSiZeComm协议的概念。但是,与RBNSiZeComm不同,RZE同时节省了发送器和接收器的能量。同样,在RZE中更容易保持发送器和接收器之间的同步。 RZE的实现基于文献[1]中提出的收发器设计,该收发器设计使用涉及FSK和ASK的混合调制方案来使无线电设备的成本/复杂度保持较低。使用这种基于非相干检测的接收机,并假设给定长度的所有可能二进制串的可能性均等,我们证明,与二进制FSK相比,发射机的平均能量节省了35.2%,对于加性高斯白噪声( AWGN)频道。同时,接收器平均节省12.5%。这些结果确立了RZE的实用性,可以作为无线传感器网络中通信的合适候选者,以实现分布式计算应用程序。

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