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Access Strategies for Spectrum Sharing in Fading Environment: Overlay, Underlay, and Mixed

机译:衰落环境中频谱共享的访问策略:覆盖,覆盖和混合

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In this paper, we analyze the achievable capacity of the secondary service for overlay and underlay access strategies. We then propose a novel mixed access strategy in which in contrast to the underlay strategy, the secondary service transmits during the idle periods without considering the interference threshold constraint. In contrast to the overlay strategy, mixed strategy makes transmission during the busy periods with a probability p_a subject to satisfying the interference threshold constraint. Parameter p_a is a secondary service parameter, which can be adjusted based on the spectrum status. Moreover, we show that the secondary service can adjust p_a to select appropriate access strategy with the objective of maximizing the achieved capacity based on the interference at the secondary service receiver, I, imposed by the primary service transmitter. The proposed spectrum-sharing technique developed in this paper based on I significantly reduces the system complexity comparing to the system in which for spectrum sharing, the imposed interference at the primary receiver is required. We further suggest a simple power allocation scheme for the mixed strategy that its achieved capacity is very close to the maximum achievable capacity of the secondary service.
机译:在本文中,我们分析了辅助服务可实现的覆盖和底层访问策略容量。然后,我们提出了一种新颖的混合访问策略,其中与底层策略相比,辅助服务在空闲时段内进行传输而无需考虑干扰阈值约束。与覆盖策略相反,混合策略使繁忙时段内的传输具有满足干扰阈值约束的概率p_a。参数p_a是辅助服务参数,可以根据频谱状态进行调整。此外,我们表明,辅助服务可以调整p_a以选择适当的访问策略,目的是基于主要服务发射机在辅助服务接收器I处产生的干扰,最大程度地实现已实现的容量。与基于频谱共享的系统要求在主接收机处施加干扰相比,本文基于I提出的频谱共享技术显着降低了系统复杂度。我们还为混合策略建议了一种简单的功率分配方案,该方案的已实现容量非常接近二级服务的最大可实现容量。

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