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首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >Capacity of multi-channel cognitive radio systems: bits through channel selections
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Capacity of multi-channel cognitive radio systems: bits through channel selections

机译:多通道认知无线电系统的能力:通过频道选择的比特

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摘要

The channel capacity of multi-channel cognitive radio systems is studied with the assumption of limited sensing capability. The randomness of sub-channel selection is utilized to convey information. Two types of sub-channels, memoryless and finite state, are considered. For both cases, the separation of sub-channel input distribution optimization and sub-channel selection policy optimization is proved. For the memoryless case, explicit expressions for optimal sensing policy are obtained. For the finite state case, the optimization of channel capacity is considered as a Markov decision problem that maximizes average award. By using Markov decision theory, it is shown that, for the finite state case, the channel capacity is determined by the static distribution of state.
机译:通过假设有限的感测能力,研究了多通道认知无线电系统的信道容量。 子信道选择的随机性用于传送信息。 考虑两种类型的子通道,记忆和有限状态。 对于这两种情况,证明了子通道输入分布优化和子信道选择策略优化的分离。 对于无记忆的案例,获得了最佳感应策略的显式表达式。 对于有限状态案例,渠道容量的优化被视为马尔可夫决策问题,最大化平均奖励。 通过使用马尔可夫决策理论,示出了,对于有限状态情况,信道容量由状态的静态分布确定。

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