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相关概念视频

Characteristics of Series Resonant Circuit01:24

Characteristics of Series Resonant Circuit

249
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:
249
Parallel Resonance01:23

Parallel Resonance

204
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:
204
Design Example: Underdamped Parallel RLC Circuit01:17

Design Example: Underdamped Parallel RLC Circuit

284
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...
284
Series Resonance01:17

Series Resonance

171
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...
171
Resonance in an AC Circuit01:26

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
Standing Waves in a Cavity01:28

Standing Waves in a Cavity

903
A household microwave and lasers are examples of standing electromagnetic waves in a cavity. When two conducting metal plates are placed parallel at the nodal planes, it creates a cavity where standing waves are formed. The cavity between the two planes is analogous to a stretched string held at the points x = 0 and x = L. Here, the distance 'L' between the two planes must be an integer multiple of half of the wavelength. The wavelengths that satisfy this condition are given by:
903

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Fabrication and Characterization of Superconducting Resonators
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频率可重新配置的毫米波矩形介电共振器天线

Akrem Soltan1, Rawad Asfour1, Salam K Khamas1

  • 1Communications Research Group, Department of Electronic and Electrical Engineering, University of Sheffield, Mappin Steet, Sheffield S1 3JD, UK.

Sensors (Basel, Switzerland)
|June 27, 2024
PubMed
概括

本研究介绍了一种使用PIN二极管的新型,具有成本效益的频率可重新配置的毫米波 (mmWave) 介电共振器天线 (DRA). 该设计实现了高收益的双带操作,非常适合5G和超越5G通信.

科学领域:

  • 电气工程 电气工程
  • 电磁学 电磁学 电磁学 电磁学
  • 天线理论天线理论

背景情况:

  • 毫米波 (mmWave) 频率对于先进的无线通信系统至关重要.
  • 需要频率可重新配置的天线来适应动态的通信环境.
  • 现有的毫米波天线设计经常面临成本,复杂性和性能方面的挑战.

研究的目的:

  • 为毫米波应用引入一种创新且具有成本效益的频率可重新配置的介电共振器天线 (DRA).
  • 为了展示使用PIN二极管进行性能控制的简化设计方法.
  • 为了验证天线适用于5G和Beyond 5G通信系统的适用性.

主要方法:

  • 两个矩形DRA元件的集成,每个都通过中央插槽输入.
  • 使用PIN二极管在不同的共振模式 (TE311和TE513) 之间切换.
  • 在PIN二极管的OFF和ON状态下对天线性能进行表征.

主要成果:

  • 关闭状态:RDRA-I在24.3GHz (TE311模式) 运行,带宽为2.66%,增益为9.2dBi.
  • 开启状态:RDRA-I和RDRA-II在29.3GHz (TE513模式) 运行,带宽为2.7%,增益为11.8dBi.
关键词:
一个PIN二极管介电共振器天线天线毫米波是一种毫米波.可重新配置的天线.

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  • 拟议的天线在毫米波频率上提供频率重新配置和高收益.
  • 结论:

    • 开发的mmWave DRA提供了一个具有成本效益和高性能的解决方案.
    • 整合PIN二极管简化了设计,并提高了可重新配置性.
    • 该天线非常适合下一代无线通信系统,如5G和B5G.