基于接地尺寸和电导率的433mhz四分之一波单极天线性能限制

Jinfeng Li
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引用次数: 1

摘要

在433MHz的工业、科学和医疗(ISM波段)应用天线中,四分之一波单极子在尺寸、增益和成本之间是一个相当好的折衷方案。单极子的电气性能在很大程度上取决于接地平面的质量(尺寸和电导率),这对可实现的增益表现出实际的限制,因为大多数工业用户环境只能提供有限电导率的有限接地平面。建立可追溯性,以了解由于接地尺寸和导电性的限制而导致的性能退化,这已成为强制性的。为此,这项工作利用通用MATLAB代替现成的软件(HFSS或CST),在433MHz下模拟四分之一波单极子天线,并以地平面相对于波长(λ)的尺寸为参数。结果表明,通过将地平面的尺寸从0.14λ扩大到14λ,来自3D辐射图的增益(PEC的方向性)从1.79 dBi上升,然后在6.7 dBi(5.78λ)处开始趋于平稳,直到在7.49 dBi(13λ)处饱和。还量化了各种接地导电性场景(如金、铝、钢)的辐射效率和增益,为商业、工业、国防和太空应用的天线设计师和工程师提供信息。
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Performance Limits of 433 MHz Quarter-wave Monopole Antennas due to Grounding Dimension and Conductivity
Among antennas for Industrial, Scientific and Medical (ISM band) applications at 433 MHz, quarter-wave monopole is a reasonably good trade-off between size, gain, and cost. The electrical performance of the monopole is largely dependent on the quality of the ground plane (size and conductivity), which exhibits a practical limit on the achievable gain as most industrial user environments can provide only a finite ground plane of finite electrical conductivity. Establishing traceability in understanding the performance degradation due to such limits due to the grounding dimension and conductivity is becoming mandatory. To this end, this work leverages universal MATLAB in place of off-the-shelf software (HFSS or CST) for the quarter-wave monopole antenna simulation at 433 MHz parametrised with the ground plane’s dimension with respect to the wavelength (λ). Results indicate that by enlarging the ground plane’s size from 0.14 λ to 14 λ, the gain (directivity for PEC) from the 3D radiation pattern rises from 1.79 dBi, then starts levelling off at 6.7 dBi (5.78 λ), until saturating at 7.49 dBi (13 λ). The radiation efficiency and gain of various grounding conductivity scenarios (e.g., gold, aluminium, steel) are also quantified to inform antenna designers and engineers for commercial, industrial, defence and space applications.
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来源期刊
Annals of Emerging Technologies in Computing
Annals of Emerging Technologies in Computing Computer Science-Computer Science (all)
CiteScore
3.50
自引率
0.00%
发文量
26
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