A centralized cooperative power control algorithm for cognitive radio networks

A. Allahyari, M. Rashidpour, M. Rasti
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引用次数: 3

Abstract

In cognitive radio networks, coexistence of primary users (licensed users) and secondary users needs a power control algorithm employed by secondary users to avoid harmful interference and guarantee acceptable minimum signal-to-interference-plus-noise ratio (SINR) to the primary users. In this paper we present a centralized cooperative power control algorithm for cognitive radio networks in which a Central Base Station (CBS) collects secondary users' side-information and finds maximum number of secondary users who can achieve their target-SINRs while their total interference caused to primary users is kept bellow a given threshold. In our proposed algorithm each secondary user upon detecting a primary receiver estimates its location (distance and direction) with respect to the detected primary receivers and sends this side-information to the CBS. Assuming that, CBS knows locations of secondary users; CBS employ our proposed power control algorithm to find as many as possible secondary users who can coexist with primary users. Our simulation results show that complexity of our proposed algorithm is very low as compared to the exhaustive-search and it results in maximum number of supported secondary users (those who can reach their target-SINRs) keeping their total interference to primary users bellow a given threshold.
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认知无线网络的集中协同功率控制算法
在认知无线网络中,当主用户(许可用户)和二次用户共存时,需要二次用户采用一种功率控制算法来避免有害干扰,并保证对主用户可接受的最小信噪比(SINR)。本文提出了一种用于认知无线网络的集中式协同功率控制算法,该算法中,中央基站(CBS)收集辅助用户的侧信息,并找到能够达到目标sinr的最大辅助用户数量,同时使其对主用户的总干扰保持在给定阈值以下。在我们提出的算法中,每个辅助用户在检测到主接收器后,根据检测到的主接收器估计其位置(距离和方向),并将此侧信息发送给CBS。假设CBS知道二级用户的位置;CBS采用我们提出的功率控制算法来寻找尽可能多的可以与主用户共存的辅助用户。我们的模拟结果表明,与穷举搜索相比,我们提出的算法的复杂性非常低,并且它导致支持的次要用户(能够达到目标sinr的用户)的最大数量,使它们对主要用户的总干扰低于给定阈值。
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