基于紧型元材料的单/双负/接近零指数共振器,用于5G 6 GHz以下无线应用
Sura Khalil Ibrahim1, Samir Salem Al-Bawri2, Mandeep Jit Singh3,4
1Department of Electrical, Electronic and Systems Engineering, Faculty of Engineering and Built Environment, Universiti Kebangsaan Malaysia, UKM, Bangi, 43600, Selangor, Malaysia.
Scientific reports
|June 4, 2024
概括
本研究介绍了用于6 GHz以下5G应用的小型化超材料 (MTM) 单元电池. 这种新的设计实现了广泛的操作频段,并显示了可调节的负折射率特性.
科学领域:
- 电磁学和元材料的使用
- 无线通信技术无线通信技术
背景情况:
- 微型化超材料 (MTM) 对下一代无线应用至关重要.
- 6GHz以下频谱是扩大5G网络能力的关键.
研究的目的:
- 设计,分析和验证一个新的小型化超材料单元电池,用于6GHz以下的5G应用.
- 为了证明可调节的电磁性质,包括负折射率.
主要方法:
- 设计了一种由圆形分环共振器和斜槽方形元素组成的元材料单元.
- 使用CST微波工作室进行了数值模拟,以分析性能.
- 模拟结果与制造的设计进行了验证.
主要成果:
- 拟议的MTM单元显示了220MHz的显著操作频段,在3.5GHz的共振.
- 证明了单/双负折射率,负电容和接近零的透率的广泛实现.
- 可调节的共振频率是通过调整中央槽条线长度来实现的.
结论:
- 开发的小型化超材料单元电池适用于6GHz以下的5G应用.
- 该设计提供可调节的电磁特性和广泛的操作带宽.
- 模拟和制造比较验证了拟议的MTM设计.
相关概念视频
Characteristics of Series Resonant Circuit
250
Series resonance occurs in a circuit containing inductive (L), capacitive (C), and resistive (R) elements connected sequentially. At the resonance frequency, the inductive and capacitive reactances are equal in magnitude but opposite in sign, effectively canceling each other. This causes the circuit's impedance is minimal, primarily determined by the resistance R. The resonant frequency of an RLC circuit is defined as:
250
Series Resonance
174
The RLC circuit impedance is defined as the ratio of the supply voltage to the circuit current. Resonance in such a circuit occurs when the imaginary part of this impedance equals zero. This specific condition means that the inductive reactance is exactly equal to the capacitive reactance. The frequency at which this happens is known as the resonant frequency. Mathematically, the resonant frequency is inversely proportional to the square root of the product of the inductance (L) and capacitance...
174
Parallel Resonance
205
The parallel RLC circuit is an arrangement where the resistor (R), inductor (L), and capacitor (C) are all connected to the same nodes and, as a result, share the same voltage across them. The parallel RLC circuit is analyzed in terms of admittance (Y), which reflects the ease with which current can flow. The admittance is given by:
205
Mesh Analysis for AC Circuits
369
In the domain of radio communication, the significance of impedance matching must be considered. It is crucial to ensure the efficient transmission of signals between radio transmitters and receivers. Achieving this balance involves using impedance-matching circuits, with one fundamental configuration comprising a resistor, capacitor, and inductor.
The process of harmonizing these impedances begins with a clear understanding of the input and output signals. Once these signals are known, the...
The process of harmonizing these impedances begins with a clear understanding of the input and output signals. Once these signals are known, the...
369
Resonance in an AC Circuit
2.0K
The property of an inductor makes it resist any change in the current passing through it, while the property of a capacitor is to build up the charge across its terminals. Hence, if an inductor and capacitor are connected in series, they have opposite effects on the relative phase between current and voltage. The current through the circuit undergoes forced oscillation at the frequency of the source. The resistance term in an R-L-C circuit acts as a damping term because power is dissipated...
2.0K
Design Example: Underdamped Parallel RLC Circuit
286
Consider designing an oscillator circuit, a crucial component in various electronic devices and systems. The objective is to create an oscillator circuit with specific characteristics: a damped natural frequency of 4 kHz and a damping factor of 4 radians per second. To accomplish this, a parallel RLC circuit is employed, known for its ability to sustain oscillations at a resonant frequency. In this case, the damping factor is pivotal in achieving the desired performance.
Starting with a fixed...
Starting with a fixed...
286


