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Bargaining-based spectrum sharing for cognitive radio networks with incomplete information

机译:信息不完整的认知无线电网络基于议价的频谱共享

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To improve the utilization of spectrum resource, a primary network can share its unused bandwidth with a closely located secondary network. As a compensation, the latter should pay a certain price for the obtained bandwidth. To determine this price under the constraint that the primary network only knows an incomplete information for the utility of the secondary network, the present paper consider the repeated offering of a price from the primary network to the secondary network, which then can accept or reject it, until they reach a price agreement. Since this bargaining process helps the primary network estimate the real utility of the secondary network as accurate as possible, the agreed price is mutually beneficial for both networks. Moreover, to increase the satisfaction of all secondary terminals in transmitting heterogeneous applications, i.e., voice, video, image, and data, we also propose a spectrum allocation solution within the secondary network based on Nash bargaining model. Numerical simulation shows that the benefits of the two networks from spectrum sharing varies with their maximal bargaining times and the proposed spectrum allocation scheme can improve the total satisfaction of all secondary terminals while maintain a reasonable fairness among them.
机译:为了提高频谱资源的利用率,主网络可以与位置较近的辅助网络共享未使用的带宽。作为补偿,后者应为获得的带宽支付一定的价格。为了在主要网络仅知道有关次网络实用性的不完整信息的约束下确定此价格,本文考虑了从主要网络向次要网络重复提供价格,然后接受或拒绝该价格,直到他们达成价格协议。由于此讨价还价过程有助于主要网络尽可能准确地估算辅助网络的实际效用,因此议定价格对两个网络都是互惠互利的。此外,为了提高所有次级终端在传输异构应用(即语音,视频,图像和数据)中的满意度,我们还提出了基于纳什议价模型的次级网络内的频谱分配解决方案。数值模拟表明,两个网络从频谱共享中获得的收益随其最大议价时间的不同而变化,所提出的频谱分配方案可以提高所有次要终端的总体满意度,同时保持它们之间的合理公平性。

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