智能电网通信有源天线的设计与仿真

V. K. Sharma, H. Kumar, M. Sharma
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引用次数: 1

摘要

本文设计了一种适用于智能电网和无线局域网通信的双端口双频环形槽有源天线,提出了一种优化智能电网的新型有源天线。双向交换是使电网更智能的关键。智能电网是指能够在公用事业公司和客户之间来回传输数据的系统。利用射频信号的无线通信和天线通常最适合于促进这种网格通信。该天线基于现代MIC和MMIC制造技术,旨在开发一种结构紧凑、重量轻、体积小、性能优异、成本低的有源天线。所提议的天线被设计成辐射和传输等量的功率。所提出的天线的回波损耗高于在所需双频频率下单端口天线应用所需的回波损耗。天线产生两个独立的频率谐振模式,覆盖2.45/5.2Ghz。天线制作在εr =3.2、厚度= 0.762 mm的Neltec衬底的一侧,微带馈线制作在衬底的另一侧。该天线设计用于以2.45 ghz和5.2GHz为中心的WLAN频段。仿真结果与实测结果吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and simulation of active antenna for communication in smart grids
In this paper, the design of a dual-port dual-band annular slot active antenna suitable for communication use in smart grids & WLAN, a new active antenna is proposed for optimizing the smart grid. Two way commutations are key to making the grid smarter. The smart grids refer to system that can communicate data back and forth between a utility company and a customer. The wireless communication and antennas that utilize RF signals are often best suited to facilitate this grids communication. This antenna based on modern MIC and MMIC fabrication technology is used to develop a compact light weight, small size, high performance and low cost active antenna. The proposed antenna is designed to radiate and transmit equal amounts of power. The return loss of the proposed antenna is higher than that desired for one-port antenna application at the desired dual-band frequencies. The antenna generates two separate frequency resonant modes cover to cover 2.45/5.2Ghz. The antenna is fabricated on one side of a Neltec substrate with εr =3.2 and thickness= 0.762 mm, and the microstrip feeding line is fabricated on the opposite side of the board. The antenna is designed to operate at WLAN bands centered at 2.45 and 5.2GHz. The simulated and measured results show fairly good agreement.
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