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State of the Art of Telecommunication Systems in Isolated and Constrained Areas

机译:孤立和受限区域电信系统领域

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摘要

Smart objects are deployed globally, contributing to improved communications and the growth of industrial systems’ performances. Unfortunately, isolated territories are generally excluded from this progress. Remote areas in Canada are no exception. Thus, about two hundred thousand people are living in isolated regions in Canadian territory. The development of these communities is slowed down not only by an outdated energy supply, but they are also dependent on telecommunication systems not fully deployed in those regions, thus contributing to the amplification of those populations’ isolation. Furthermore, the magnetic field in some regions of the planet and very often in isolated areas undergoes partial or total absorption, known as white areas, making the propagation of the signal very delicate. As a part of this article, a state of the art of telecommunication solutions available in an isolated environment is applied with a critical analysis based on several criteria. It shows the ability to use an original approach based on a captive balloon. Despite the proposed solution’s feasibility, several challenges need to be addressed before formally adopting it. These challenges include: (i) controlling the height of the balloon; (ii) stabilization of the balloon; and (iii) powering the system. The list of references given at the end of the paper should offer aids for the industry and for researchers working in this field.
机译:智能对象全球部署,有助于改善通信和工业系统性能的增长。不幸的是,孤立的领土通常被排除在这一进步之外。加拿大的偏远地区也不例外。因此,大约两十万人住在加拿大领土的孤立地区。这些社区的发展不仅可以通过过时的能源供应而放缓,但它们也取决于在这些地区未完全部署的电信系统,从而有助于扩增这些人群的孤立。此外,行星的某些区域中的磁场并且在隔离区域通常经常经历部分或全部吸收,称为白色区域,使得信号的传播非常细腻。作为本文的一部分,基于若干标准,应用了在孤立环境中可用的电信解决方案的技术。它显示了使用基于俘虏气球的原始方法的能力。尽管提出了解决方案的可行性,但在正式采用之前需要解决几个挑战。这些挑战包括:(i)控制气球的高度; (ii)气球稳定; (iii)为系统供电。本文末尾的参考文献名单应为行业提供艾滋病,并为在该领域工作的研究人员提供。

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