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Location Assisted Subcarrier and Power Allocation in Underlay Mobile Cognitive Radio Networks

机译:底层移动认知无线电网络中的位置辅助子载波和功率分配

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In this paper we perform subcarrier and power allocation for the downlink transmission in a cognitive radio network by exploiting the location information of mobile secondary users. A mixed integer nonlinear problem is formulated which maximizes the aggregate capacity of the secondary network, subject to the constrained interference at the primary user and the maximum transmit power limit of the secondary base station. To solve the formulated problem, an optimal subcarrier allocation is first obtained based on a practical assumption, followed by an optimal power allocation achieved using standard optimization methods. The proposed solution can facilitate to reduce latency and provide high speed communication of big data for mobile secondary users since speed, direction and location are all taken into account for effective allocation of resources. Simulation results verify our design intentions and confirm the efficiency of the proposed resource allocation strategy.
机译:在本文中,我们通过利用移动辅助用户的位置信息,为认知无线电网络中的下行链路传输执行子载波和功率分配。提出了一个混合整数非线性问题,该问题使辅助网络的总容量最大化,这要受到主要用户的约束干扰和辅助基站的最大发射功率限制。为了解决提出的问题,首先基于实际假设来获得最优子载波分配,然后是使用标准优化方法实现的最优功率分配。所提出的解决方案可以有助于减少等待时间,并为移动辅助用户提供大数据的高速通信,因为速度,方向和位置都已考虑在内,可以有效分配资源。仿真结果验证了我们的设计意图,并确认了所提出的资源分配策略的效率。

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