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Research on the Integrated Space-Air-Ground Communication Network Based on Network Slicing and its Key Technologies

机译:基于网络切片及其关键技术的综合空洞地通信网络研究及其关键技术

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In recent years, with the power network continuously developed and constructed, various new types of services are constantly emerging. Diversified business needs and the surge data of users and terminal devices pose new challenges to the current architecture of power communication network. Thus, the network need to be upgraded by using related technologies to meet the requirements of the so-called Energy Internet's development. Network slicing technology can build multiple logical networks with differentiated performance on the same physical infrastructure according to different service requirements. The personalized customization and security isolation brought by network slicing can better meet the needs of service requirements while saving network construction costs. The Integrated Space-Air-Ground (SAG) Communication Network can achieve a ubiquitous network coverage and be applied in emergency communication scenario. Therefore, network slicing technology can be introduced to the wireless communication part of the Integrated SAG network to solve the problems faced by current power communication network. This paper first introduces the concept and advantages of network slicing technology and analyzes current state of the power communication network, then proposes an Integrated SAG Network architecture based on network slicing and finally discusses its key technologies.
机译:近年来,随着电网连续开发和建造,各种新型服务不断涌现。多元化的业务需求和用户和终端设备的浪涌数据对电力通信网络的当前架构构成了新的挑战。因此,需要通过使用相关技术来升级网络以满足所谓的能源互联网的发展的要求。根据不同的服务要求,网络切片技术可以在同一物理基础架构上构建具有不同性能的多个逻辑网络。网络切片带来的个性化定制和安全隔离可以更好地满足服务要求的需求,同时节省网络施工成本。综合空间 - 空地(SAG)通信网络可以实现无处不在的网络覆盖范围,并应用于紧急通信场景。因此,可以将网络切片技术引入集成SAG网络的无线通信部分以解决当前电力通信网络面临的问题。本文首先介绍了网络切片技术的概念和优点,并分析了电力通信网络的当前状态,然后提出了一种基于网络切片的集成SAG网络架构,最后讨论其关键技术。

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