Interference Modeling and Analysis in Cognitive Radio Networks

Yanxiao Zhao, B. Panigrahi, K. Sohraby, Wei Wang
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引用次数: 4

Abstract

Cognitive radio networks CRNs have received considerable attention and viewed as a promising paradigm for future wireless networking. Its major difference from the traditional wireless networks is that secondary users are allowed to access the channel if they pose no harmful interference to primary users. This distinct feature of CRNs has raised an essential and challenging question, i.e., how to accurately estimate interference to the primary users from the secondary users? In addition, spectrum sensing plays a critical role in CRNs. Secondary users have to sense the channel before they transmit. A two-state sensing model is commonly used, which classifies a channel into either busy or idle state. Secondary users can only utilize a channel when it is detected to be in idle state. In this paper, we tackle the estimation of interference at the primary receiver due to concurrently active secondary users. With the spectrum sensing, secondary users are refrained from transmitting once an active user falls into their sensing range. As a result, the maximum number of simultaneously interfering secondary users is bounded, typically ranging from 1 to 4. This significant conclusion considerably simplifies interference modeling in CRNs. The authors present all the cases with possible simultaneously interfering secondary users. Moreover, the authors derive the probability for each case. Extensive simulations are conducted and results validate the effectiveness and accuracy of the proposed approach.
认知无线电网络中的干扰建模与分析
认知无线网络(crn)已经受到了相当大的关注,并被视为未来无线网络的一个有前途的范例。它与传统无线网络的主要区别是,如果次要用户不会对主要用户造成有害干扰,则允许其访问该信道。crn的这一独特特征提出了一个重要而具有挑战性的问题,即如何准确估计次要用户对主用户的干扰?此外,频谱感知在crn中起着至关重要的作用。次要用户在发送之前必须感知信道。通常采用双状态感知模型,将信道分为繁忙状态和空闲状态。辅助用户只能在检测到通道处于空闲状态时使用通道。在本文中,我们解决了主接收端由于并发活跃的辅助用户而产生的干扰估计问题。利用频谱感知,一旦活跃用户进入其感知范围,备用用户就不会再发射。因此,同时干扰辅助用户的最大数量是有限制的,通常在1到4之间。这一重要结论大大简化了crn中的干扰建模。作者提出了所有可能同时干扰二次用户的情况。此外,作者还推导了每种情况的概率。进行了大量的仿真,结果验证了该方法的有效性和准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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