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Channel coding adoption versus increasing sensing time in secondary service to manage the effect of imperfect spectrum sensing in cognitive radio networks

机译:信道编码的采用与增加辅助服务中的感知时间以管理认知无线电网络中不完善的频谱感知的影响

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In this paper we consider an overlay cognitive network in which to guarantee a Quality of Service (QoS) for the primary users, a maximum probability of collision is enforced to secondary service. When collision, caused by imperfect spectrum sensing, happens, it results in increasing error rate in both primary and secondary systems. While such degradation in primary service conforms with QoS requirements of that service, this may not be acceptable from secondary user perspective. Such degradation can be dealt with in secondary service either by employing channel coding techniques at the expense of effective rate reduction or increasing the sensing time to reduce the collision probability. This results in the reduction of the data transmission time which also results in the reduction of effective data rate for secondary users. In this paper, we compare these two cases and show that using rate-compatible Low-Density Parity-Check codes, the effective data rate for the coded case can be significantly more than that of the case without channel coding while exhibiting a considerably better performance.
机译:在本文中,我们考虑了一个覆盖认知网络,在该网络中,为了保证主要用户的服务质量(QoS),将最大的冲突概率强加给了辅助服务。当由不完善的频谱感应引起的碰撞发生时,会导致初级和次级系统中的错误率增加。尽管主要服务中的此类降级符合该服务的QoS要求,但从次要用户的角度来看,这可能是不可接受的。可以通过采用信道编码技术以降低有效速率为代价,或者通过增加检测时间以减少冲突概率,来在辅助服务中处理这种降级。这导致数据传输时间的减少,这也导致次级用户的有效数据速率的减少。在本文中,我们对这两种情况进行了比较,结果表明,使用速率兼容的低密度奇偶校验码,编码情况下的有效数据速率可以大大高于没有信道编码情况下的有效数据速率,同时表现出明显更好的性能。 。

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