Tuning the higher to lower order resonance frequency ratio and implementing the tunable THz MIMO/self-diplexing antenna

IF 2.9 4区 计算机科学 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC
Durgesh Kumar, Vivek Kumar, Yadav Anand Subhash, Pushpa Giri, Gaurav Varshney
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引用次数: 9

Abstract

The frequency ratio of higher to lower order mode can be electronically tuned in a terahertz (THz) antenna with metallic radiator using a graphene loop. Antenna is designed with slotted metallic radiator to obtain the dual-band response with fundamental and second order transverse magnetic mode providing the directional and bi-directional radiation pattern in the lower and upper band, respectively. The insertion of graphene loop and varying its chemical potential (μc) provides two resonances until 0.4eV and four resonances for further greater values of μc. The desired impedance matching can be achieved at the frequencies of any two resonances at a time by selecting an appropriate value of μc. Antenna can operate with higher/lower order mode centred at frequency 3.77/3.02 THz and 4.39/2.86 THz for the values of μc as 0.9 and 0.3eV , respectively. The frequency ratio of higher to lower order mode can be tuned within the range of 1.22–1.59 with the variation in μc. Also, application of graphene loop confines the radiated power in a single direction at the frequency of higher order mode making the radiation pattern consistent. Antenna can be utilized in future THz wireless applications which require the utilization of adjacent channels with different frequencies in communication. Also, a two-port antenna is designed which can offer the tunable multi-input–multi-output (MIMO) and self-diplexing capability with pattern diversity. The MIMO parameters; envelope correlation coefficient (ECC) and diversity gain (DG) is evaluated and their values are found within acceptable limits as ECC<0.06 and DG>9.9 in the operating bands.

调谐高阶到低阶谐振频率比并实现可调谐THz-MIMO/自双工天线
使用石墨烯环,可以在具有金属辐射器的太赫兹(THz)天线中对高阶模式与低阶模式的频率比进行电子调谐。天线设计有开槽金属辐射器,以获得双频带响应,基本和二阶横向磁模式分别在低频带和高频带提供定向和双向辐射方向图。石墨烯环的插入和改变其化学势(μc)提供了两个谐振,直到0.4eV,并提供了四个谐振,以获得更大的μc值。通过选择适当的μc值,可以在一次任意两个谐振的频率下实现所需的阻抗匹配。天线可以在以频率3.77/3.02 THz和4.39/2.86 THz为中心的高阶/低阶模式下工作,μc的值分别为0.9和0.3eV。高阶与低阶模式的频率比可以在1.22–1.59的范围内调谐,变化单位为μc。此外,石墨烯环的应用将辐射功率限制在较高阶模频率的单个方向上,使辐射模式一致。天线可以在未来的太赫兹无线应用中使用,这些应用需要在通信中使用具有不同频率的相邻信道。此外,还设计了一种双端口天线,该天线可以提供具有模式分集的可调谐多输入多输出(MIMO)和自双工能力。MIMO参数;评估包络相关系数(ECC)和分集增益(DG),并且发现它们的值在可接受的限度内;0.06和DG>;9.9。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Nano Communication Networks
Nano Communication Networks Mathematics-Applied Mathematics
CiteScore
6.00
自引率
6.90%
发文量
14
期刊介绍: The Nano Communication Networks Journal is an international, archival and multi-disciplinary journal providing a publication vehicle for complete coverage of all topics of interest to those involved in all aspects of nanoscale communication and networking. Theoretical research contributions presenting new techniques, concepts or analyses; applied contributions reporting on experiences and experiments; and tutorial and survey manuscripts are published. Nano Communication Networks is a part of the COMNET (Computer Networks) family of journals within Elsevier. The family of journals covers all aspects of networking except nanonetworking, which is the scope of this journal.
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