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Throughput maximization in multi-channel cognitive radio systems with delay constraints

机译:具有延迟约束的多信道认知无线电系统中的吞吐量最大化

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We study the throughput-vs-delay trade-off in an overlay multi-channel single-secondary-user cognitive radio system. Due to the limited sensing capabilities of the cognitive radio user, channels are sensed sequentially. Maximizing the throughput in such a problem is well-studied in the literature. Yet, in real-time applications, hard delay constraints need to be considered besides throughput. In this paper, optimal stopping rule and optimal power allocation are discussed to maximize the secondary user's throughput, subject to an average delay constraint. We provide a low complexity approach to the optimal solution of this problem. Simulation results show that this solution allows the secondary user to meet the delay constraint without sacrificing throughput significantly. It also shows the benefits of the optimal power allocation strategy over the constant power allocation strategy.
机译:我们研究了覆盖多通道单次用户认知无线电系统中的吞吐量与延迟权衡。由于认知无线电用户的有限感测能力,因此顺序地感测频道。在此类问题中使吞吐量最大化已在文献中进行了充分研究。然而,在实时应用中,除了吞吐量之外,还需要考虑硬延迟约束。在本文中,讨论了最佳停止规则和最佳功率分配,以在平均延迟约束下最大化次要用户的吞吐量。我们提供了一种低复杂度的方法来最佳解决此问题。仿真结果表明,该解决方案允许次要用户满足延迟约束,而不会显着牺牲吞吐量。它还显示了最佳功率分配策略相对于恒定功率分配策略的优势。

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