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Coordinated Shared Spectrum Precoding With Distributed CSIT
DOI:10.1109/TWC.2016.2554112.png)
摘要
En 中文
In this paper, the operation of a licensed shared access system is investigated, considering downlink communication. The system comprises a multiple-input-single-output (MISO) incumbent transmitter (TX)-receiver (RX) pair, which offers a spectrum sharing opportunity to a MISO licensee TX-RX pair. Our main contribution is the design of a coordinated transmission scheme, inspired by the underlay cognitive radio (CR) approach, with the aim of maximizing the average rate of the licensee, subject to an average rate constraint for the incumbent. In contrast to most prior works on the underlay CR, the coordination of the two TXs takes place under a realistic channel state information (CSI) scenario, where each TX has solely access to the instantaneous direct channel of its served terminal. Such a CSI knowledge setting brings about a formulation based on the theory of Team Decisions, whereby the TXs aim at optimizing a common objective given the same constraint set, on the basis of individual channel information. Consequently, a novel set of applicable precoding schemes consisting in letting the two TXs cooperate on the basis of the statistical information is proposed. We verify by simulations that this novel, practically relevant, coordinated precoding scheme outperforms the standard underlay CR approach.
Keyword:
Spectrum sharing
coordination
precoding
local CSI
QoS
cognitive radio
team decision
期刊
IF:
10.7
论文数:
1.3W
被引数:
5.3W
机构
引用论文
Breaking Spectrum Gridlock With Cognitive Radios: An Information Theoretic Perspective
PROCEEDINGS OF THE IEEE
IF25.9
On Peak versus Average Interference Power Constraints for Protecting Primary Users in Cognitive Radio Networks在峰值与平均干扰功率约束下保护认知无线电网络中的主要用户

