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Data traffic-based analysis of delay and energy consumption in cognitive radio networks with and without resource reservation

机译:具有和不具有资源预留的认知无线电网络中基于数据流量的延迟和能耗分析

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摘要

A new opportunistic cross-layer MAC protocol involving channel allocation and packet scheduling for cognitive radio networks is proposed. Cognitive radio allows secondary users (SUs) to exploit the available portions of the licensed spectrum bands without interfering with primary users. In particular, we consider a cognitive radio system, where SUs are equipped with two transceivers: a control transceiver and a software-defined radio transceiver. Data traffic characteristics of SUs are considered to ameliorate system performance. So, we propose a mechanism of resource reservation to improve QoS requirements that favors successful SUs to transmit data during x time slots without interfering with primary users. The key novelty of this paper is giving priority for SUs with important data traffic and which frequently solicits data channels to transmit for the remaining time of the ongoing time slot and for the next time slots directly after checking the channel availability. We develop a new analytical model to evaluate delay parameter for two scenarios with and without resource reservation and we then investigate the impact of those scenarios on the energy consumption. We show through simulations that cognitive radio performances increase noticeably with the proposed scheme. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:提出了一种新的机会性跨层MAC协议,涉及认知无线电网络的信道分配和分组调度。认知无线电允许次要用户(SU)利用许可频谱的可用部分,而不会干扰主要用户。特别地,我们考虑一种认知无线电系统,其中SU配备了两个收发器:控制收发器和软件定义的无线电收发器。 SU的数据流量特性被认为可以改善系统性能。因此,我们提出了一种资源预留机制来改善QoS要求,该机制有利于成功的SU在x个时隙内传输数据而不会干扰主要用户。本文的关键新颖之处在于,优先处理具有重要数据流量的SU,并经常在检查信道可用性之后立即在正在进行的时隙的剩余时间和下一个时隙中直接请求数据信道进行传输。我们开发了一个新的分析模型来评估带有和不带有资源预留的两种情况下的延迟参数,然后研究这些情况对能耗的影响。我们通过仿真表明,认知无线电性能随着所提出的方案而显着提高。版权所有(c)2014 John Wiley&Sons,Ltd.

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