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The location-allocation problem of drone base stations

机译:无人机基站的位置分配问题

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In this study, we consider the 3D location problem of multiple Drone Base Stations (DBSs) together with the allocation of the resources to serve the users in a wireless communication network. The problem is formulated as a dynamic capacitated single-source location-allocation problem. The capacity of a DBS is a non-linear function of the distance and the amount of resource received from terrestrial base stations. Furthermore, data rate, which is the service level, is a non-linear function of both the distance and the amount of the allocated resource. As a consequence, the optimization model is formulated as a Mixed Integer Non-Linear Program (MINLP), which has a higher complexity compared to many existing problems in the literature. We propose a novel heuristic algorithm for the efficient solution of the problem. The performance of the proposed heuristic is evaluated through an extensive computational study where the MINLP formulation is solved by the BARON solver. Computational results show that the proposed heuristic yields promising performance in terms of both CPU efficiency and solution accuracy. We also provide managerial insights about integrating DBSs into communication networks. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在这项研究中,我们考虑了多个无人机基站(DBS)的3D位置问题以及为无线通信网络中的用户提供服务的资源分配。该问题被表述为动态容量单一源位置分配问题。 DBS的容量是距离和从地面基站接收的资源量的非线性函数。此外,作为服务级别的数据速率是距离和分配的资源量两者的非线性函数。结果,优化模型被公式化为混合整数非线性程序(MINLP),与文献中的许多现有问题相比,它具有更高的复杂度。我们提出了一种新颖的启发式算法来有效解决问题。拟议的启发式方法的性能通过广泛的计算研究进行了评估,其中MINLP公式由BARON求解器求解。计算结果表明,从CPU效率和解决方案精度两方面来看,拟议的启发式方法都产生了令人满意的性能。我们还提供有关将DBS集成到通信网络中的管理见解。 (C)2019 Elsevier Ltd.保留所有权利。

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