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MIMO Multi-Group Multi-Way Relaying: Interference Alignment in a Partially Connected Network

机译:MIMO多组多路中继:部分连接的网络中的干扰对准

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In this paper, a partially connected multi-group multi-way relay network is considered. Partially connected means that not all groups of nodes are connected to all relays in the network. However, any group is connected to at least one relay which serves this group of nodes. In such a network, each node wants to share a certain number of data streams with all other nodes in its group, but not with nodes in other groups. The most challenging part of such a network topology is the handling of the groups which are connected to multiple relays. This network topology can be represented as multiple subnetworks, where each of these contains one relay and all groups connected to this relay. In this paper, a new closed-form solution to achieve interference alignment is proposed. The relays are used to manipulate the effective channel in order to achieve interference alignment at each receiver. The concept of simultaneous signal and channel alignment is generalized in order to handle groups with more than two members. It is shown through simulation that the proposed interference alignment algorithm outperforms the reference algorithm in terms of sum rate and degrees of freedom.
机译:本文考虑了部分连接的多组多路中继网络。部分连接意味着并非所有节点组都连接到网络中的所有中继。但是,任何组都连接到至少一个为该组节点服务的中继。在这样的网络中,每个节点都希望与其组中的所有其他节点共享一定数量的数据流,而不是与其他组中的节点共享。这种网络拓扑结构中最具挑战性的部分是如何处理连接到多个继电器的组。该网络拓扑可以表示为多个子网,其中每个子网包含一个中继,并且所有组都连接到该中继。本文提出了一种新的封闭形式的解决方案,以实现干涉对准。继电器用于操纵有效信道,以便在每个接收器处实现干扰对准。为了处理具有两个以上成员的组,对信号和通道同时对齐的概念进行了概括。通过仿真表明,在总和率和自由度方面,所提出的干扰对准算法优于参考算法。

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