认知无线电的吞吐量优化,同时保护主用户

Zunnorain Amer Ali Baig, A. Malik, I. Qureshi
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引用次数: 0

摘要

电磁频谱是一种天然有限的资源,随着无线通信应用的蓬勃发展,有限的资源越来越拥挤,有效利用频谱的唯一解决方案是认知无线电,而频谱感知是CRs中最重要的功能,有了频谱感知,二次用户的传输吞吐量就起着重要的作用。本文采用能量检测方案进行频谱感知,在保证主用户权益保护的前提下,实现了从用户吞吐量的优化。对于一帧中的总时间,期望用于传感的时间最少,并将该帧中的剩余时间用于传输。与传感相关的两个参数分别是辅助用户和主用户的误报概率和检测概率,检测概率越大,授权用户的权利越受保护,误报概率越小,使用未充分利用的频带的机会越大,应用了最著名的能量检测方案。本文研究了在充分保护许可用户约束的前提下,为实现二次用户的最大和最优传输时间而控制感知时间的问题。以最少的感知时间实现了最大可达吞吐量,这是以往工作所没有的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Throughput optimization for Cognitive Radio while bulwarking Primary User
Electromagnetic spectrum, a natural limited resource, with the boom in applications of wireless communications, that limited resource is becoming congested more and more and the only solution for efficient spectrum utilization is Cognitive Radios, moreover spectrum sensing is the most irrefutably functionality in CRs and with spectrum sensing, throughput for secondary user's transmission plays an important role. In this paper after performing spectrum sensing using energy detection scheme, we have achieved the optimized throughput for Secondary User by ensuring the protection of Primary User's rights. For a total time in a frame, least time for sensing is desired and the residual time in that frame is used for transmission. Two parameters related to sensing are fallacious alarm probability and detection probability pertaining to secondary and primary users correspondingly, greater the probability of detection, more the licensed user's rights are protected, smaller the fallacious alarm probability, greater chance of using the underutilized band, applying the most famous technique known as energy detection scheme. In this paper we studied the problem of conniving sensing time in order to achieve maximum and optimal transmission time for secondary user keeping the restraint that licensed user is adequately bulwarked. Maximum achievable throughput was achieved with least sensing time, not achieved in previous work.
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