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Relay-Aided Random Access in Space-Air-Ground Integrated Networks

机译:中继空气地集成网络中的继电器随机访问

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摘要

The Internet of Things (IoT) has been extensively investigated as an enabling technology for improving our daily life. With increasing demands for seamless connectivity, the space-air-ground integrated network (SAGIN) is expected to provide reliable communications for IoT devices anywhere and anytime. Since IoT devices have sparse activity and low signaling overhead, random access can be an efficient means to relieve the burden of machine-type communication, which provides connections among massive IoT devices. However, there are a few drawbacks. For example, random access suffers from signal collisions, and low-energy IoT devices may have limited transmission coverage. To overcome these drawbacks, in this article, relay-aided random access (RRA) is proposed as a promising strategy to support massive IoT devices in the SAGIN. We first introduce the RRA structure and scheme as well as several advantages over conventional random access. Then we present some of the key technologies of RRA, including energy harvesting, arrival time detection, and signal number detection. Finally, different scenarios or use cases for practical applications of RRA schemes in the SAGIN are discussed.
机译:事物互联网(物联网)被广泛调查为改善日常生活的能力技术。随着对无缝连接需求的增加,期望空中地集成网络(SAGIN)在任何地方和随时随地为IOT设备提供可靠的通信。由于IOT设备具有稀疏活动和低信令开销,因此随机访问可以是减轻机器类型通信负担的有效手段,它提供了大规模物联网设备之间的连接。但是,有一些缺点。例如,随机访问遭受信号冲突,并且低能量物联网设备可以具有有限的传输覆盖。为了克服这些缺点,在本文中,提出了中继辅助随机接入(RRA)作为支持Sagin中的大规模物联网设备的有希望的策略。我们首先介绍RRA结构和方案以及传统随机接入的几个优点。然后我们介绍RRA的一些关键技术,包括能量收集,到达时间检测和信号编号检测。最后,讨论了SAGIN中RA方案的实际应用的不同场景或用例。

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