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首页> 外文期刊>IEEE transactions on wireless communications >Backscatter-Aided Cooperative Transmission in Wireless-Powered Heterogeneous Networks
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Backscatter-Aided Cooperative Transmission in Wireless-Powered Heterogeneous Networks

机译:无线动力异构网络中的反向散射辅助协作传输

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We propose backscatter-aided cooperative transmission for wireless-powered heterogeneous networks (WPHetNets). In WPHetNets, where various kinds of nodes such as high-power base station (e.g., TV tower and macro base station) and small-power access point (e.g., WiFi access point) coexist, we aim to increase transmission range and support fair communication through internet-of-things (IoT) device cooperation. For this, we first propose long-range bistatic backscatter (BB)-aided cooperative transmission with two-device cooperation where ambient backscatter (AB) enables short-range information exchange in sequential mode between devices nearby under energy neutral operation, termed 'Cooperation mode'. To ensure fairness between devices, we formulate common-throughput maximization problem where an algorithm for time allocation is presented. Compared with 'Non-cooperation mode' (i.e., no information exchange via AB) and active RF based cooperation schemes, the proposed scheme is shown to increase both the coverage and fairness between devices for battery-less IoT networks. We then generalize the architecture of backscatter-aided cooperative transmission with multiple-device cooperation where the information exchange is performed in sequential mode and parallel (broadcasting) mode. In the sequential mode, a graph-matching based suboptimal pairing algorithm is proposed whose validity is corroborated through comparison with a heuristic search based optimal pairing, and then we compare the two modes for multiple-device cooperation.
机译:我们为无线动力的异构网络(WPHetnets)提出了反向散射的协作传输。在WPHetnets中,其中各种节点如高功率基站(例如,电视塔和宏基站)和小功率接入点(例如,WiFi接入点)共存,我们的目标是增加传输范围和支持公平的通信通过互联网(IOT)设备合作。为此,我们首先提出了具有双器件合作的远程双晶的反向散射(BB)的协作传输,其中环境反向散射(AB)能够以能量中性操作的设备附近的设备之间的顺序模式进行短程信息交换,称为“协作模式” '。为了确保设备之间的公平性,我们制定常见吞吐量的最大化问题,其中呈现了时间分配算法。与“非合作模式”相比(即,无信息交换)和基于AB的活动汇兑合作计划,所拟议的方案被证明可以增加电池电量网络的设备之间的覆盖率和公平性。然后,我们通过以顺序模式和并行(广播)模式执行信息交换的多设备协作,概括了反向散射辅助协作传输的体系结构。在顺序模式中,提出了一种基于图形匹配的匹配的子优相配对算法,其通过与基于启发式搜索的最优配对进行比较来证实其有效性,然后我们比较多个设备合作的两种模式。

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