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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Optimization of Deployable Base Stations With Guaranteed QoE in Disaster Scenarios
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Optimization of Deployable Base Stations With Guaranteed QoE in Disaster Scenarios

机译:灾难场景下具有保证QoE的可部署基站的优化

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摘要

Reconstructing emergency communication networks (ECNs) quickly after a disaster occurs is critical so that people can share information and confirm their safety. In recent studies, deployable base stations (DBSs) have demonstrated their ability to reconstruct an ECN. However, considering limited resources, it is impossible to deploy DBSs in the whole disaster area. The above shortage can be covered by deploying small-cell networks (i.e., low-power transmission base stations) in areas with high communication demand, e.g., in refuges. Considering the above two-tier ECN, in this paper, we study its performance and optimization issue with the objective of minimizing the number/density of DBSs while guaranteeing acceptable coverage probabilities for both communication tiers. The majority of current research focuses on scenarios where the base stations follow a homogeneous Poisson point process of coverage probability. It is difficult to transfer the results to other applications, e.g., when communication resources are shared, such as by refugees following a disaster. In such cases, the distribution of users is closer to that of a Poisson cluster process. We then investigate the optimization method to minimize the number/density of DBSs. We used Monte Carlo methods with various parameter choices to evaluate the results and to determine the accuracy of our evaluation.
机译:灾难发生后迅速重建紧急通信网络(ECN)至关重要,这样人们可以共享信息并确认其安全。在最近的研究中,可部署基站(DBS)已证明其重建ECN的能力。但是,考虑到资源有限,不可能在整个灾区部署DBS。通过在通信需求高的区域(例如,避难所)中部署小型小区网络(即,低功率传输基站)可以弥补上述不足。考虑到以上两层ECN,我们在本文中研究其性能和优化问题,以最小化DBS的数量/密度,同时保证两个通信层的可接受覆盖率。当前的大部分研究集中在基站遵循均等的覆盖概率的泊松点过程的场景。例如,当共享通信资源时,例如由灾难后的难民,很难将结果传输到其他应用程序。在这种情况下,用户的分布更接近于Poisson集群过程。然后,我们研究优化方法以最小化DBS的数量/密度。我们使用带有各种参数选择的蒙特卡洛方法来评估结果并确定评估的准确性。

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