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Interference-throughput tradeoff in dynamic spectrum access: Analysis based on discrete-time queuing subjected to bursty preemption

机译:动态频谱接入中的干扰吞吐量权衡:基于离散时间排队进行爆发抢占的分析

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This article considers the issue of dynamic spectrum access in time domain, in which the secondary user seeks spectrum vacancy between bursty transmissions of the primary user to communicate. Since spectrum sensing and data transmission can not be done simultaneously in the same band, the secondary user should employ the sense-then-transmit strategy to detect the presence of primary user before accessing the licensed band. We model the behavior of the secondary user as a discrete-time queuing subjected to bursty preemption, which is an abstraction of temporal channel unavailability due to the random presence of the primary user. We formulate an interference-throughput tradeoff problem under the discrete-time queuing framework, and find the optimal slot duration to maximize the throughput of the secondary user, yet to ensure the primary interfered time ratio (PITR) is less than a tolerable threshold. Finally, the computer simulation results validate our theoretical approach.
机译:本文认为时域中的动态频谱访问问题,其中辅助用户在主用户的突发传输之间寻找频谱空位以进行通信。由于频谱感测和数据传输不能在同一频带中同时进行,因此辅助用户应该采用感觉 - 然后发送策略来检测在访问许可频带之前的主用户的存在。我们将辅助用户的行为模拟作为经受突发抢占抢占的离散时间队列,这是由于主用户的随机存在而导致的时间信道不可用的抽象。我们在离散时间排队框架下制定了干扰吞吐量权衡问题,找到了最佳的时隙持续时间,以最大化辅助用户的吞吐量,尚未确保初级干扰时间比(PITR)小于可容许的阈值。最后,计算机仿真结果验证了我们的理论方法。

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