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Price-Based Bandwidth Allocation for Backscatter Communication With Bandwidth Constraints

机译:具有带宽约束的反向散射通信的基于价格的带宽分配

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摘要

Recently proposed Bluetooth low energy (BLE)-backscatter allows interference-free transmission by locally generating a sub-carrier for frequency shifting (FS). Motivated by the BLE backscatter, in this paper, we investigate the price-based bandwidth allocation for multi-user backscatter communication (BackCom), where multiple BackCom users are allocated to different non-overlapping sub-channels and all users share the whole spectrum in a frequency division multiple access (FDMA) manner. Each BackCom user is charged by the primary user (PU) in the same sub-channel for a price, which is proportional to the allocated bandwidth and can be viewed as the cost for bandwidth sharing. A Stackelberg game is formulated to study joint maximization of the revenue of PUs and the utility function of each BackCom user subject to the total bandwidth constraint on the PUs and the individual bandwidth constraints on each BackCom user. Stackelberg Equilibriums (SEs) for two proposed schemes are investigated in closed-form expressions. Simulation results confirm the effectiveness of proposed schemes in improving the revenue performance of PUs and the sum capacity performance of BackCom users.
机译:最近提出的蓝牙低功耗(BLE)反向散射通过本地生成用于频移(FS)的子载波来实现无干扰传输。在BLE反向散射的推动下,本文研究了基于价格的多用户反向散射通信(BackCom)带宽分配,其中,多个BackCom用户分配给了不同的非重叠子信道,并且所有用户共享整个频谱。频分多址(FDMA)方式。每个BackCom用户在同一子信道中由主要用户(PU)收取一定的价格,该价格与分配的带宽成比例,并且可以视为带宽共享的成本。制定了Stackelberg游戏,以研究PU的收益和每个BackCom用户的效用函数的联合最大化,这取决于PU上的总带宽约束和每个BackCom用户的单独带宽约束。在闭式表达式中研究了两个拟议方案的Stackelberg平衡(SE)。仿真结果证实了所提方案在提高PU的收益性能和BackCom用户的总容量性能方面的有效性。

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