Distributed consensus estimator of hierarchical network transfer function in WPNC networks

J. Sýkora
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引用次数: 4

Abstract

Wireless Physical Layer Network Coding (WPNC) network nodes determine their front-end, back-end, and node processing operation based on the knowledge of the global Hierarchical Network Transfer Function (H-NTF). The H-NTF can be derived from the network connectivity state and it is essential to set up properly WPNC processing at each node. The data payload in WPNC network uses a common signal space of mutually interacting signals superposing on the receive node antenna. There are no orthogonalized communication links that would allow traditional control-data signaling based approaches to determine the network state. The procedure where each node establishes a complete picture of the network state must be performed before the payload phase such that the superposing non-orthogonal pilot signals fully respect the WPNC paradigm. This paper proposes a distributed consensus-based estimator of the network state which operates on a common signal space shared by all nodes in the network. The algorithm allows each node to find the global network state based only on local neighbor superposed pilot observation.
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WPNC网络中分层网络传递函数的分布式一致性估计
无线物理层网络编码(Wireless Physical Layer Network Coding, WPNC)网络节点基于全局分层网络传递函数(hierarchy Network Transfer Function, H-NTF)的知识来确定自己的前端、后端和节点处理操作。H-NTF可以从网络连接状态导出,并且必须在每个节点上设置适当的WPNC处理。WPNC网络的数据有效载荷采用相互作用的信号叠加在接收节点天线上的公共信号空间。没有正交化的通信链路,这将允许传统的基于控制数据信令的方法来确定网络状态。每个节点建立网络状态的完整图像的过程必须在有效载荷阶段之前执行,以便叠加的非正交导频信号完全尊重WPNC范式。本文提出了一种基于分布式共识的网络状态估计器,该估计器运行在网络中所有节点共享的公共信号空间上。该算法允许每个节点仅基于局部邻居叠加导频观测来发现全局网络状态。
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