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Throughput Analysis for Cognitive Radio (CR) Systems

机译:认知无线电(CR)系统的吞吐量分析

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In cognitive radio networks, the secondary network (users) are allowed to utilize the frequency bands of primary network (users) when they are not currently being used. To support this function, the secondary users are required to sense the radio frequency environment, and once the primary user is found to be active, the secondary users have to vacate the channel within certain amount of time. There are two parameters related to channel sensing: probability of detection and probability of false alarm. The higher the detection probability, the better the primary users can be protected. However, from the secondary users’ perspective, the lower the false alarm probability, the more chances the channel can be reused, thus the higher the achievable throughput for the secondary users. In this paper, we study the fundamental tradeoff between sensing capability and achievable throughput of the secondary users. Also, we present a design for sensing slot duration to maximize the achievable throughput for the secondary users under the constraint that the primary users are sufficiently protected. Using energy detection scheme, an optimal sensing time which provides the best tradeoff is given. Cooperative sensing is also studied based on the methodology of the proposed sensing throughput tradeoff. Computer simulations are presented to evaluate the proposed tradeoff methodology.
机译:在认知无线电网络中,当次要网络(用户)当前未被使用时,允许次要网络(用户)使用主网络的频带。为了支持此功能,要求次要用户感知射频环境,一旦发现主要用户处于活动状态,次要用户必须在一定时间内退出信道。与信道感测有关的参数有两个:检测概率和虚警概率。检测概率越高,对主要用户的保护就越好。但是,从二级用户的角度来看,错误警报的可能性越低,通道可以被重用的机会就越大,因此二级用户可实现的吞吐量就越高。在本文中,我们研究了辅助用户的感知能力和可达到的吞吐量之间的基本权衡。同样,我们提出了一种在主用户受到充分保护的约束下,用于感知时隙持续时间的设计,以最大程度地提高次用户的吞吐量。使用能量检测方案,给出了提供最佳权衡的最佳感测时间。还基于提出的感测吞吐量权衡的方法研究了协同感测。提出了计算机仿真以评估建议的权衡方法。

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