Faculty of Electrical Engineering, University of West Bohemia, Univerzitní 22, 306 14 Pilsen, Czech Republic.
Department of Communication and Computer Engineering, Cihan University-Erbil, Erbil 44001, Iraq.
Sensors (Basel). 2023 Apr 6;23(7):3775. doi: 10.3390/s23073775.
Global concerns regarding environmental preservation and energy sustainability have emerged due to the various impacts of constantly increasing energy demands and climate changes. With advancements in smart grid, edge computing, and Metaverse-based technologies, it has become apparent that conventional private power networks are insufficient to meet the demanding requirements of industrial applications. The unique capabilities of 5G, such as numerous connections, high reliability, low latency, and large bandwidth, make it an excellent choice for smart grid services. The 5G network industry will heavily rely on the Internet of Things (IoT) to progress, which will act as a catalyst for the development of the future smart grid. This comprehensive platform will not only include communication infrastructure for smart grid edge computing, but also Metaverse platforms. Therefore, optimizing the IoT is crucial to achieve a sustainable edge computing network. This paper presents the design, fabrication, and evaluation of a super-efficient GSM triplexer for 5G-enabled IoT in sustainable smart grid edge computing and the Metaverse. This component is intended to operate at 0.815/1.58/2.65 GHz for 5G applications. The physical layout of our triplexer is new, and it is presented for the first time in this work. The overall size of our triplexer is only 0.007 λ, which is the smallest compared to the previous works. The proposed triplexer has very low insertion losses of 0.12 dB, 0.09 dB, and 0.42 dB at the first, second, and third channels, respectively. We achieved the minimum insertion losses compared to previous triplexers. Additionally, the common port return losses (RLs) were better than 26 dB at all channels.
由于能源需求不断增长和气候变化带来的各种影响,全球对环境保护和能源可持续性的关注日益增加。随着智能电网、边缘计算和基于元宇宙技术的发展,传统的私人电网已经明显不足以满足工业应用的苛刻要求。5G 的独特功能,如大量连接、高可靠性、低延迟和大带宽,使其成为智能电网服务的理想选择。5G 网络行业将严重依赖物联网(IoT)来发展,这将成为未来智能电网发展的催化剂。这个综合平台不仅将包括智能电网边缘计算的通信基础设施,还将包括元宇宙平台。因此,优化物联网对于实现可持续的边缘计算网络至关重要。本文提出了一种用于可持续智能电网边缘计算和元宇宙中的 5G 物联网的超高效 GSM 三工器的设计、制造和评估。该组件旨在 5G 应用中在 0.815/1.58/2.65GHz 频率下运行。我们的三工器的物理布局是新颖的,这是首次在这项工作中提出。我们的三工器的整体尺寸仅为 0.007λ,与之前的工作相比是最小的。与之前的三工器相比,我们提出的三工器具有非常低的插入损耗,分别为第一、第二和第三通道的 0.12dB、0.09dB 和 0.42dB。此外,所有通道的公共端口回波损耗(RL)均优于 26dB。