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首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >Scalable Ad Hoc Networks for Arbitrary-Cast: Practical Broadcast-Relay Transmission Strategy Leveraging Physical-Layer Network Coding
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Scalable Ad Hoc Networks for Arbitrary-Cast: Practical Broadcast-Relay Transmission Strategy Leveraging Physical-Layer Network Coding

机译:任意广播的可扩展自组织网络:利用物理层网络编码的实用广播中继传输策略

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The capacity of wireless ad hoc networks is constrained by the interference of concurrent transmissions among nodes. Instead of only trying to avoid the interference, physical-layer network coding (PNC) is a new approach that embraces the interference initiatively. We employ a network form of interference cancellation, with the PNC approach, and propose the multihop, broadcast-relay transmission strategy in linear, rectangular, and hexagonal networks. The theoretical analysis shows that it gains the transmission efficiency by the factors of 2.5 for the rectangular networks and 2 for the hexagonal networks. We also propose a practical signal recovery algorithm in the physical layer to deal with the influence of multipath fading channels and time synchronization errors, as well as to use media access control (MAC) protocols that support the simultaneous receptions. This transmission strategy obtains the same efficiency from one-to-one communication to one-to-many. By our approach, the number of the users/terminals of the network has better scalability, and the overall network throughput is improved.
机译:无线自组织网络的容量受到节点之间并发传输的干扰的限制。物理层网络编码(PNC)不仅仅是尝试避免干扰,而是一种主动包含干扰的新方法。我们采用PNC方法的网络形式的干扰消除技术,并提出了线性,矩形和六边形网络中的多跳,广播中继传输策略。理论分析表明,矩形网络的传输效率提高了2.5倍,六角形网络的传输效率提高了2倍。我们还提出了一种在物理层中实用的信号恢复算法,以处理多径衰落信道和时间同步错误的影响,并使用支持同时接收的媒体访问控制(MAC)协议。这种传输策略从一对一通信到一对多通信获得了相同的效率。通过我们的方法,网络的用户/终端数量具有更好的可扩展性,并且提高了整体网络吞吐量。

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