從特征??措姶懦瑯嫳砻妫耗J椒治觥⒄{控、綜合與激勵
題目:Truncated Impedance Sheet Model for Low-Profile Broadband Nonresonant-Cell Metasurface Antennas Using Characteristic Mode Analysis
作者: Feng Han Lin, Zhi Ning Chen
單位: National University of Singapore
收錄/引用:F. H. Lin and Z. N. Chen, “Truncated Impedance-Sheet Model for Low-Profile Broadband Non-resonant-cell Metasurface Antennas using Characteristic Mode Analysis,” IEEE Trans. Antennas Propag., vol. 66, no. 10, pp. 5043–5051, Oct. 2018.
全文鏈接:https://ieeexplore.ieee.org/document/8408836
Abstract— A unit-cell-free truncated impedance sheet model isproposed for the modeling and design of low-profile broadbandmetasurface antennas (MAs) composed of nonresonant unit cellsusing characteristic mode analysis. Different from conventionalMAs with locally resonant unit cells, the nonresonant unit cellsof the proposed MAs only contribute to the grid impedance andthe MA operates with the global resonances of the metasurfaces.New measures are also reported to incorporate a higher ordermetasurface mode for wideband radiation. A low-profile broadbandMA is designed at the 5 GHz Wi-Fi bands for the proofof concept. Three modes are excited simultaneously, includinga quasi-TM01 mode, a quasi-TM21 mode, and a dipole mode.With a size of 0.8λL × 0.8λL × 0.087λL (λL is the wavelength infree space at the lowest operating frequency), the prototyped MAachieves a bandwidth of 45% with |S11| < ?10 dB, boresightgain of 8.5–11.6 dBi, and 3 dB beamwidth of 40°–60°/43°–65° forthe E-/H-planes.Index Terms— Broadband antennas, characteristic modeanalysis (CMA), higher order modes, impedance loading,impedance sheet, metamaterials, metasurfaces (MTSs), modecontrol, multimode antenna, surface impedance.
中文簡介:核心思想是以小博大,局部改變全局,不變的是宏觀結構,變的是本構關系,以“非諧振”單元構建和控制全局“諧振”,從而實現(xiàn)基函數(shù)的構造和精細調控。文章包含了“建模、分析、綜合、調控、激勵”五個方面,可玩度高,變化空間充足。
往期回顧:
1. Metasurface也講模式---【基于特征模分析的超表面天線】
2. Metasurface Antennas】超表面助力寬帶、多頻段、多天線系統(tǒng)去耦合,改善方向圖畸變、提高隔離度
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圖1. 超構表面天線樣品
圖2. 實測與仿真反射系數(shù)與邊射增益對比
圖3. 實測與仿真方向圖
圖4. 時域仿真得到的三個模式在各自諧振頻率上的表面電流分布
全文鏈接:https://ieeexplore.ieee.org/document/8408836
不愧是仿真八級大師,科研效率奇高