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Maximum Throughput Region of Multiuser Cognitive Access of Continuous Time Markovian Channels

机译:连续时间马尔可夫信道的多用户认知访问的最大吞吐量区域

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摘要

The problem of cognitive access of multiple primary channels by multiple cognitive users is considered. The primary transmission on each channel is modeled by a continuous time Markov on-off process. Cognitive access of the primary channels is realized via channel sensing. Each cognitive user adopts a slotted transmission structure, senses one channel in each slot and makes the transmission decision based on the sensing outcome. The cognitive transmissions in each channel are subject to collision constraints that limit their interference to the primary users. The maximum throughput region of this multiuser cognitive network is characterized by establishing inner and outer bounds. Under tight collision constraints, the inner bound is obtained by a simple orthogonalized periodic sensing with memoryless access policy and its generalizations. The outer bound, on the other hand, is obtained by relating the sum throughput with the interference limits. It is shown that when collision constraints are tight, the outer and inner bounds match. This maximum throughput region result is further extended by a generalized periodic sensing scheme with a mechanism of timing sharing. Under general collision constraints, another outer bound is obtained via Whittle's relaxation and another inner bound obtained via Whittle's index sensing policy with memoryless access. Packet level simulations are used to validate the analytical performance prediction.
机译:考虑了多个认知用户对多个主要渠道的认知访问问题。每个通道上的主要传输是通过连续时间马尔可夫开关过程来建模的。主要信道的认知访问是通过信道感测来实现的。每个认知用户都采用时隙传输结构,在每个时隙中感知一个信道,并根据感知结果做出传输决策。每个通道中的认知传输都受到冲突限制,这些冲突限制了它们对主要用户的干扰。该多用户认知网络的最大吞吐量区域的特征是建立内部和外部边界。在严格的冲突约束下,内边界是通过具有无记忆访问策略的简单正交周期感测及其一般化获得的。另一方面,外边界是通过将总吞吐量与干扰限制相关联而获得的。结果表明,当碰撞约束严格时,外部边界和内部边界匹配。通过具有定时共享机制的广义周期感测方案进一步扩展了该最大吞吐量区域的结果。在一般的冲突约束下,通过Whittle的松弛获得另一个外部界限,并且通过Whittle的具有无内存访问的索引感测策略获得另一个内部界限。数据包级模拟用于验证分析性能预测。

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