2.4 GHz多用途操作psi型贴片天线设计

Sumanta Bhattacharyya, H. Rekha, Shayantan Sarkar, N. Achyutha Prasad, B. Jagadeesh, Shrawani Verma
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引用次数: 0

摘要

随着通信系统及其方法的发展,设计各种类型的天线以适应不同需求的重要性日益增加。虽然某些天线,特别是基片集成天线的优化设计比较困难,但微带贴片天线的设计和优化比较容易。除了提供经济优势外,它还在辐射和增益方面提供更高的效率,使其适合基于通信的应用。相关工作提出了一种psi形状的优化天线,能够扫描和接收2.4 GHz谐振频率,用于射频(RF)能量收集系统(RFEHS)、射频识别(RFID)和无线局域网(WLAN)通信等应用。该结构已通过插入馈电技术进行了测试,所使用的衬底是带有差动导体和覆盖层元件的arlon。整个设计和仿真在先进设计系统(ADS)布局和动量微波电磁(EM)模式下进行。所设计的psi型天线最大增益为5.47 dBi,辐射效率为70.39%,适合上述应用。基于软件的原型仿真验证了所提天线的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
2.4 GHz Operational PSI-Shaped Patch Antenna Design For Multi Purpose Applications
With the evolution of communication systems and their methodologies, the significance of designing various types of antennae has increased to suit the different necessities. While some antennas, especially the substrate-integrated antennas are hard to optimize, the microstrip patch antennas are easy to design and optimize. Besides, providing an economic advantage, it also delivers higher efficiencies in terms of radiation and gain, making it appropriate for communication-based applications. The concerned work proposes a psi-shaped optimized antenna that is capable of scanning and receiving the 2.4 GHz resonant frequency for applications like radio-frequency (RF) energy harvester systems (RFEHS), radio-frequency identification (RFID) and wireless local area network (WLAN) communications. The structure has been tested with an inset feeding technique and the substrate used is arlon with differential conductor and cover layer elements. The entire design and simulation have been carried out in advanced design system (ADS) layout and momentum microwave electromagnetic (EM) mode. The designed psi-shaped antenna is able to produce a maximum gain of 5.47 dBi with a radiation efficiency of 70.39%, making it suitable for the aforesaid applications. A software-based prototype simulation has also been carried out to find the effectiveness of the proposed antenna.
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