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Rate-Optimal and Reduced-Complexity Sequential Sensing Algorithms for Cognitive OFDM Radios

机译:用于认知的率最佳和减少复杂性顺序传感算法

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Sequential sensing algorithms are developed for OFDM-based hierarchical cognitive radio (CR) systems. Secondary users sense multiple sub-bands simultaneously for possible spectrum availabilities under hard miss-detection constraints to prevent interference to the primary users. Accounting for the fact that the sensing time overhead can often be significant, a performance metric is developed based on the effective achievable data rate. An optimization problem is formulated in the framework of optimal stopping problems to maximize the average effective data rate by determining the best time to stop taking samples for sensing, as well as the best set of channels to use for data transmission. A basis expansion-based sub-optimal algorithm is derived to reduce the prohibitive complexity of the optimal solution.
机译:为基于OFDM的分层认知无线电(CR)系统开发了顺序感测算法。辅助用户在硬错过的错误检测约束下同时感知多个子带,以防止对主用户的干扰。考虑感测时间开销往往是显着的,基于有效可实现的数据速率开发性能度量。优化问题在最佳停止问题的框架中制定,以通过确定停止拍摄样本的最佳时间来最大化平均有效数据速率,以及用于数据传输的最佳通道集。基于基于扩展的次优算法,可以降低最佳解决方案的禁止复杂性。

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