Feasibility Analysis of Distributed Power Control System for Cognitive Radio Networks

A. F. Isnawati
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Abstract

The need for an efficient transmit power is affected by the condition of user and power control methods used. User conditions that categorized in cognitive femtocell networks included in the category as distributed user, so it required a distributed power control (DPC). To be implemented in cognitive radio network (CRN) communication, the system must be feasible. The problem raised in this research regarding the feasibility of implementing the DPC system on the CR network To meet the feasible requirements, it is necessary to test the system's feasibility through testing the eigenvalues of the link gain matrix obtained and testing the non-negative power vector conditions. In this study, experiments were carried out on 2 schemes of the number of users, namely the scheme of 5 users and 10 users, to determine the power requirements of each user according to the channel distribution. The results obtained for both schemes show that the total eigenvalue of the link gain matrix for all channels is less than 1 and all users meet the non-negative power vector requirements. So it can be concluded that those two schemes are feasible to implement a distributed power control system. Furthermore, as more users use the channel and the closer the distance between users, the more power is consumed due to high interference, necessitating high power compensation in order to maintain the target of signal to interference and noise ratio (SINR).
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认知无线电网络分布式功率控制系统的可行性分析
对有效发射功率的需求受到用户条件和所使用的功率控制方法的影响。在认知毫微微小区网络中分类为分布式用户的用户条件,因此需要分布式功率控制(DPC)。要在认知无线电网络(CRN)通信中实现,该系统必须是可行的。本研究提出的在CR网络上实现DPC系统的可行性问题为了满足可行性要求,有必要通过测试获得的链路增益矩阵的特征值和测试非负功率矢量条件来测试系统的可行性。在本研究中,对用户数量的两种方案进行了实验,即5个用户和10个用户的方案,以根据信道分布确定每个用户的功率需求。两种方案的结果都表明,所有信道的链路增益矩阵的总特征值小于1,并且所有用户都满足非负功率矢量的要求。因此可以得出结论,这两种方案对于实现分布式功率控制系统是可行的。此外,随着使用信道的用户越多,用户之间的距离越近,由于高干扰,消耗的功率就越多,需要高功率补偿,以保持信号干扰噪声比(SINR)的目标。
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