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Feasibility Conditions for Interference Neutralization in Relay-Aided Interference Channel

机译:中继辅助干扰信道干扰中和的可行性条件

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摘要

Interference neutralization (IN) is a new interference management mechanism found from and inherent in interference networks with relays. In this paper, we study the feasibility of IN for relay-aided multi-input-multi-output (MIMO) interference broadcast channel (MIMO-IBC) without symbol extension. Assuming linear transceiver with multiple amplify-and-forward relays, we consider fully connected symmetric systems, where each base station (BS), relay, and user is equipped with multiple antennas, and each user desires multiple data streams. We first present the necessary condition of generalized IN, which is the proper condition to ensure interference-free transmission with linear transceivers for general relay-aided MIMO-IBC. We then find and prove the necessary and sufficient condition of the feasibility of coordinated IN and pure IN for a class of relay-aided MIMO-IBC, where the sufficiency is proved by constructing a full rank coefficient matrix of interference-free transmission equation with sub-matrices of special structures. We show that when each BS and user has the minimal antenna configuration for data transmission, the sufficient and necessary condition for coordinated IN is the same as the necessary condition for generalized IN. When there is an arbitrary number of antennas at the BSs and users, the derived sufficient conditions give rise to the minimum relay configuration required by the coordinated IN and pure IN to support a given number of data streams without interference. Our proof sheds lights on how to use the relay resources to neutralize the interference in an efficient way. The results are applicable for both relay-aided MIMO-IBC and relay-aided interference channel (MIMO-IC).
机译:干扰中和(IN)是一种新的干扰管理机制,存在于具有中继的干扰网络中。本文研究了IN在无符号扩展的继电器辅助多输入多输出(MIMO)干扰广播信道(MIMO-IBC)中的可行性。假设线性收发器具有多个放大和转发继电器,我们考虑全连接对称系统,其中每个基站 (BS)、继电器和用户都配备了多个天线,每个用户都需要多个数据流。我们首先提出了广义IN的必要条件,这是确保通用继电器辅助MIMO-IBC的线性收发器无干扰传输的适当条件。然后,我们发现并证明了一类中继辅助MIMO-IBC的协调IN和纯IN可行性的必要和充分条件,其中通过构造具有特殊结构的子矩阵的无干扰传输方程的满秩系数矩阵来证明其充分性。我们表明,当每个BS和用户都具有用于数据传输的最小天线配置时,协调IN的充分和必要条件与广义IN的必要条件相同。当 BS 和用户处存在任意数量的天线时,派生的充分条件会产生协调 IN 和纯 IN 所需的最小继电器配置,以支持给定数量的数据流而不受干扰。我们的证明揭示了如何使用继电器资源以有效的方式中和干扰。结果适用于继电器辅助MIMO-IBC和中继辅助干扰信道(MIMO-IC)。

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