Energy-sensitive cooperative spectrum sharing: A contract design approach

Zilong Zhou, Xinxin Feng, Xiaoying Gan
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Abstract

In cooperative spectrum sharing, secondary users consume their energy to relay primary user's traffics in exchange for permission to access the spectrum licensed to primary user. As energy consumption is an important issue for mobile secondary users operating on batteries, it is reasonable for these secondary users to be energy-sensitive. In this paper, we utilize contract theory to deal with the cooperative spectrum sharing problem under the condition of secondary users being energy-sensitive. In our scheme, primary user wishes to benefit from cooperative communication with secondary users and selling spectrum access opportunities on the premise of not degrading its own performance. Primary user's objective is to design an optimal contract that maximizes its utility and offer it to secondary users. Secondary users are classified into different types according to their characteristics. We analyze the optimal contract design problem under symmetric and asymmetric information scenarios and propose a low complexity algorithm called TSSOA to find the optimal contract for primary user. Finally, we present and analyze the numerical results, which confirm the efficiency of the proposed scheme.
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能源敏感型合作频谱共享:一种契约设计方法
在合作频谱共享中,备用用户消耗能量中继主用户的流量,以换取授权给主用户的频谱访问权限。对于使用电池的移动二次用户来说,能源消耗是一个重要的问题,因此这些二次用户对能源敏感是合理的。本文利用契约理论研究了二次用户能量敏感条件下的协同频谱共享问题。在我们的方案中,主用户希望在不降低自身性能的前提下,从与二级用户的合作通信和出售频谱接入机会中获益。主用户的目标是设计一个最优的契约,使其效用最大化,并将其提供给次要用户。从端用户可以根据用户的特点划分为不同的类型。分析了对称和非对称信息场景下的最优契约设计问题,提出了一种低复杂度的TSSOA算法来寻找主用户的最优契约。最后给出了数值结果并进行了分析,验证了所提方案的有效性。
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