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Research on Multi-band Antenna Receiving Technology for Power Satellite Communication Terminals

机译:电力卫星通信终端多频段天线接收技术研究

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With the development of ubiquitous power Internet of Things, new types of power services have emerged, and massive data transmission has brought new challenges to power communication networks. Satellite communication is widely used in power and material interconnection business scenarios due to its wide communication coverage and strong communication performance. Firstly, based on the power Internet of Things and its business characteristics and needs, this paper designs a high-low-orbit satellite hybrid networking architecture for power and material-linked services. Then, it studies the overall process of high-low-orbit satellite multi-band switching and uses a layered Bayesian model. The classification perception of multi-scenario power services; finally, the application advantages of multi-band reception technology in the ubiquitous power Internet of Things are summarized. The research indicates that the power Internet of Things involves a wide geographical range and many business scenarios. Applying multi-band fusion receiving technology to the ubiquitous power Internet of Things construction can make up for the shortcomings of the traditional methods, such as emergency services, dispatching services, inspection services, etc. It is of great significance to provide service support to create favorable conditions for the safe and economic operation of the power grid.
机译:随着无处不在的电力物联网的发展,出现了新型的电力服务,海量数据传输给电力通信网络带来了新的挑战。卫星通信由于其广泛的通信覆盖范围和强大的通信性能而被广泛用于电力和材料互连业务场景。首先,基于电力物联网及其业务特征和需求,本文设计了一种用于电力和物联网服务的高低轨道卫星混合网络体系结构。然后,研究了高低轨道卫星多频带切换的整个过程,并使用了分层贝叶斯模型。多场景电力服务的分类感知;最后,总结了多频带接收技术在无处不在的电力物联网中的应用优势。研究表明,强大的物联网涉及广泛的地理范围和许多业务场景。将多频段融合接收技术应用于无所不在的电力物联网建设中,可以弥补应急服务,调度服务,检查服务等传统方法的不足。为电网安全经济运行创造有利条件。

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