Reduction of Computitional Costs when Forming a Matrix of Transition Probabilities in a Cognitive Radio System

O. G. Melentiev, I. Shevnina, Alexander V. Stenin
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Abstract

This paper considers computational costs that occur when a cognitive radio system changes channels for a secondary user. The theoretical gain was estimated to find ways to optimize computations, based on knowledge about the conditional state of the cognitive radio system. The analysis of the unnormalized matrix of transition probabilities made it possible to formulate two rules for filling the matrices. The authors studied the structure of the matrix of transition probabilities for three channels and tried to identify the relationship between its elements and symmetry for the matrix dimensions - 24 to 24 elements. The proposed technique allows replacing the calculation of the product of N real numbers with one rewriting of the real number and reduces the multiplication operations. The results of the work can serve as methods for optimizing computational costs in cognitive radio systems or similar systems, this is due to the need to perform computations on devices that do not have enough free resources.
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认知无线电系统转移概率矩阵计算成本的降低
本文考虑了认知无线电系统为辅助用户改变信道时的计算成本。基于认知无线电系统条件状态的知识,估计理论增益以找到优化计算的方法。通过对转移概率非归一化矩阵的分析,可以制定两种填充矩阵的规则。研究了三个通道的跃迁概率矩阵的结构,并试图确定其元素与矩阵维度- 24到24元素的对称性之间的关系。所提出的技术允许用一个实数重写代替N个实数乘积的计算,并减少乘法操作。这项工作的结果可以作为优化认知无线电系统或类似系统的计算成本的方法,这是由于需要在没有足够空闲资源的设备上执行计算。
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