Autonomous Aerial Networks with Wireless Power Transfer: Resource Optimization, Standardization, and Challenges

Reda Khalid, M. Naeem, W. Ejaz
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Abstract

Wireless networks are expected to provide unlimited connectivity to an increasing number of heterogeneous devices. Future wireless networks (sixth-generation (6G)) will accomplish this in three-dimensional (3D) space by combining terrestrial and aerial networks. However, effective resource optimization and standardization in future wireless networks are challenging because of massive resource-constrained devices, diverse quality-of-service (QoS) requirements, and a high density of heterogeneous devices. Despite extensive research efforts, a sophisticated technical approach to support massive connectivity through sustainable terrestrial and aerial networks has not yet been developed. Driven by this, we provide a review of autonomous aerial networks (AANs) with wireless power transfer (WPT), which can autonomously modify radio parameters and sustain their resource usage and management (power transfer, exploiting spectrum). We discuss the architecture of AANs with WPT to emphasize its essential aspects. We then provide a summary of standardization activities for the success of AANs with WPT. We discuss resource optimization for AANs with WPT and its challenges. Following that, we provide a case study to maximize the computing efficiency of AANs with WPT. Finally, we discuss potential future research areas for the broad use of AANs with WPT.
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具有无线电力传输的自主空中网络:资源优化、标准化和挑战
无线网络有望为越来越多的异构设备提供无限连接。未来的无线网络(第六代(6G))将通过结合地面网络和空中网络在三维(3D)空间中实现这一点。然而,由于大量资源受限的设备、多样化的服务质量(QoS)要求和高密度的异构设备,未来无线网络中有效的资源优化和标准化具有挑战性。尽管进行了广泛的研究,但尚未开发出一种复杂的技术方法来支持通过可持续的陆地和空中网络实现大规模连接。在此基础上,我们对具有无线功率传输(WPT)的自主空中网络(AAN)进行了综述,该网络可以自主修改无线电参数并维持其资源使用和管理(功率传输、利用频谱)。我们用WPT讨论了AAN的体系结构,以强调其基本方面。然后,我们总结了AAN与WPT的成功标准化活动。我们讨论了使用WPT的AAN的资源优化及其挑战。然后,我们提供了一个案例研究,以最大限度地提高WPT的AAN的计算效率。最后,我们讨论了AAN与WPT广泛使用的潜在未来研究领域。
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CiteScore
10.80
自引率
0.00%
发文量
55
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