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Short Paper: On Optimal Sensing and Transmission Strategies for Dynamic Spectrum Access

机译:短文:关于动态频谱接入的最佳传感和传输策略

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The listen-Before-Talk (LBT) strategy has been prevalent in cognitive radio networks where secondary users opportunistically access under-utilized primary band. To minimize the amount of disruption from secondary users to primary signals, secondary users generally are required to detect the presence of the primary user reliably, and access the spectrum intelligently. The sensing time has to be long enough to achieve desirable detection performance. Weaker primary signals require longer sensing time, thereby reduce the secondary transmission opportunities. In this paper, we generalize the packet-level LBT strategy by allowing the secondary user to potentially transmit multiple packets after one sensing, and study the optimal control policy to determine the conditions under which the secondary user should sense the channel. We show that the optimal spectrum access control policy has a simple threshold-based structure, where the secondary user transmits consecutive packets until the estimated probability of the primary user being idle falls below a threshold, and senses the channel otherwise. The result applies to systems with both perfect and imperfect packet collision detection with the primary users.
机译:讲话前(LBT)策略在认知无线电网络中普遍存在,其中辅助用户机会访问过的主要频段。为了最小化辅助用户到初级信号的中断量,辅助用户通常需要可靠地检测主用户的存在,并智能地访问频谱。感测时间必须足够长以达到所需的检测性能。较弱的主要信号需要更长的感测时间,从而降低二次传输机会。在本文中,我们通过允许辅助用户在一个感测之后允许次要用户允许多个分组来概括分组级LBT策略,并研究最佳控制策略以确定辅助用户应该感知信道的条件。我们表明,最佳频谱访问控制策略具有简单的基于阈值的结构,其中辅助用户发送连续分组,直到主用户的估计概率差低于阈值,并否则感测信道。结果适用于具有主用户的完美和不完美的数据包碰撞检测的系统。

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