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Energy Efficiency and Interference Neutralization in Two-Hop MIMO Interference Channels

机译:两跳MIMO干扰信道中的能量效率和干扰中和

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The issue of energy-aware resource allocation in an amplify-and-forward (AF) relay-assisted multiple-antenna interference channel (IC) is considered. A novel interference neutralization (IN) scheme is proposed for relay design and, based on the IN relay matrix design, two algorithms are developed to jointly allocate the users' transmit powers, beamforming (BF) and receive filters. The first algorithm considers a competitive scenario and employs a noncooperative game-theoretic approach to maximize the individual energy efficiency (EE) of each communication link, defined as the ratio of the achievable rate over the consumed power. The resulting algorithm converges to a unique fixed point, has limited complexity, and can be implemented in a distributed fashion. The second algorithm employs fractional programming tools and sequential convex optimization to centrally allocate the users' transmit powers, BF, and receive filters for global energy efficiency (GEE) maximization. The resulting algorithm is guaranteed to converge and has limited computational complexity. Numerical results show that the competitive IN design achieves virtually the same performance as the cooperative design if IN is feasible, while the gap is small if perfect IN is not achievable.
机译:考虑了放大转发(AF)中继辅助多天线干扰信道(IC)中的能量感知资源分配问题。提出了一种新颖的干扰中和方案,用于中继设计,并基于IN中继矩阵设计,开发了两种算法来共同分配用户的发射功率,波束成形(BF)和接收滤波器。第一种算法考虑竞争场景,并采用非合作博弈论方法来最大化每个通信链路的个体能效(EE),定义为可达到的速率与消耗的功率之比。所得算法收敛到唯一的固定点,具有有限的复杂度,并且可以以分布式方式实现。第二种算法采用分数编程工具和顺序凸优化来集中分配用户的发射功率BF和接收滤波器,以实现全局能效(GEE)最大化。所得算法可以保证收敛,并且计算复杂度有限。数值结果表明,如果可行的话,竞争性IN设计实际上可以达到与协作设计相同的性能,而如果无法实现完美的IN,则差距很小。

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