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Energy-efficient Dual-codebook-based Backscatter Communications for Wireless Powered Networks

机译:基于节能双码本的无线动力网络的反散射通信

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The common backscatter communications (ComBC), widely applied in wireless powered networks such as the RFID systems, exhibit the shortcoming that only a few bits are backscattered at a time due to energy limitation. It is significant to improve energy efficiency in backscatter communications so more data can be delivered within one backscatter. In this article, the energy-efficient dual-codebook based backscatter communications (DBBC) is proposed, which adopts two prefix codebooks shared by the sender and the receiver over a backscatter communication link. With the DBBC, the sender backscatters codewords from which the receiver decodes the original data. Using Energy Consumption Disparity (ECD) between backscattering bits 1 and 0 in the existing backscatter communications, we formulate the optimization problem minimizing energy consumption over the link for the DBBC. Mapping a prefix codebook into a binary tree and performing pruning and expanding operation (PEO) on binary trees, we obtain the solution to the optimization problem, which includes the two energy-efficient codebooks and the other two key parameters for the DBBC. The experiments on wireless identification sensing platform (WISP) show that, under the proposed DBBC, the sender can backscatter data 83% more than the ComBC with the same energy without sacrificing throughput.
机译:广泛应用于诸如RFID系统的无线供电网络中的共同背散态通信(COMBC)展示了仅由于能量限制的时间仅对几个比特进行反向散射的缺点。重要的是提高反向散射通信中的能量效率,因此可以在一个后散射中传递更多的数据。在本文中,提出了基于节能的双码本(DBBC),该通信(DBBC)通过反向散射通信链路采用发件人和接收器共享的两个前缀码本。使用DBBC,发送者反响码字代码字,接收器对原始数据进行解码。在现有的反向散射通信中使用能量消耗视差(ECD)在后面的反向散射通信中,我们制定了最小化DBBC链路的能量消耗的优化问题。将前缀码本映射到二叉树中并在二进制树上执行修剪和扩展操作(PEO),我们获得了优化问题的解决方案,包括两个节能码本和DBBC的其他两个关键参数。关于无线识别感测平台(WISP)的实验表明,在所提出的DBBC下,发件人可以在不牺牲吞吐量的情况下使用相同的能量来反向散射83%的数据。

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