Stochastic Control of Event-Driven Feedback in Multiantenna Interference Channels

被引:4
作者
Huang, Kaibin [1 ,2 ]
Lau, Vincent K. N. [2 ]
Kim, Dongku [1 ,3 ]
机构
[1] Yonsei Univ, Sch Elect & Elect Engn, Seoul 120749, South Korea
[2] Hong Kong Univ Sci & Technol, Dept Elect & Comp Engn, Hong Kong, Hong Kong, Peoples R China
[3] Yonsei Univ, Radio Commun Res Ctr, Seoul 120749, South Korea
基金
新加坡国家研究基金会;
关键词
Array signal processing; dynamic programming; feedback communication; interference channels; Markov processes; stochastic optimal control; time-varying channels; MIMO BROADCAST CHANNELS; FINITE-RATE FEEDBACK; LIMITED FEEDBACK; BEAMFORMING SYSTEMS; FADING CHANNELS; QUANTIZATION; COMMUNICATION; PERFORMANCE; NETWORKS; CAPACITY;
D O I
10.1109/TSP.2011.2165063
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Spatial interference avoidance is a simple and effective way of mitigating interference in multiantenna wireless networks. The deployment of this technique requires channel-state information (CSI) feedback from each receiver to all interferers, resulting in substantial network overhead. To address this issue, this paper proposes the method of distributive control that intelligently allocates CSI bits over multiple feedback links and adapts feedback to channel dynamics. For symmetric channel distributions, it is optimal for each receiver to equally allocate the average sum-feedback rate for different feedback links, thereby decoupling their control. Using the criterion of minimum sum-interference power, the optimal feedback-control policy is shown using stochastic-optimization theory to exhibit opportunism. Specifically, a specific feedback link is turned on only when the corresponding transmit-CSI error is significant or interference-channel gain is large, and the optimal number of feedback bits increases with this gain. For high mobility and considering the sphere-cap-quantized-CSI model, the optimal feedback-control policy is shown to perform water-filling in time, where the number of feedback bits increases logarithmically with the corresponding interference-channel gain. Furthermore, we consider asymmetric channel distributions with heterogeneous path losses and high mobility, and prove the existence of a unique optimal policy for jointly controlling multiple feedback links. Given the sphere-cap-quantized-CSI model, this policy is shown to perform water-filling over feedback links. Finally, simulation demonstrates that feedback-control yields significant throughput gains compared with the conventional differential-feedback method.
引用
收藏
页码:6112 / 6126
页数:15
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