用于5G毫米波无线终端的光束切换天线
Khaled M Morshed1, Debabrata K Karmokar2, Karu P Esselle3
1School of Engineering, Macquarie University, Sydney, NSW 2109, Australia.
Sensors (Basel, Switzerland)
|July 29, 2023
概括
本研究为5G毫米波设备提供了一种具有成本效益的漏电波天线 (LWA),可实现1D和2D光束切换,以提高无线终端性能.
科学领域:
- 电气工程 电气工程
- 天线理论天线理论
- 无线通信无线通信
背景情况:
- 对于28 GHz毫米波5G设备来说,光束切换至关重要.
- 对于无线终端来说,现有的解决方案可能不具有成本效益.
研究的目的:
- 为5G无线终端研究和开发具有成本效益,可重新配置模式的漏电波天线 (LWA).
- 为了实现一维 (1D) 和二维 (2D) 的光束切换能力.
主要方法:
- 设计了一种半宽均的漏波天线 (LWA),用于1D光束切换,具有3个输入点.
- 制造并测试了1D LWA,展示了向后,宽侧和向前方向的光束切换.
- 整合了两个直角的LWA,用于在无线设备地面平面上进行二维光束切换.
主要成果:
- 1D LWA实现了128°的3dB光束覆盖.
- 2D天线系统展示了五个方向的切换.
- 2D系统实现了宽光束覆盖范围:167°在φ=0°和154°在φ=90°.
结论:
- 开发的1D和2D光束切换LWA为5G毫米波终端提供了具有成本效益的解决方案.
- 可重新配置的天线提供了强大的无线连接所必需的广角覆盖.
- 将无线设备集成到地面平面中验证了实际适用性.
相关概念视频
Biasing of Metal-Semiconductor Junctions
282
Biasing metal-semiconductor junctions involves applying a voltage across the junction. Specifically, the metal is connected to a voltage source, while the semiconductor is grounded. This technique is essential for controlling the direction and magnitude of current flow in electronic devices, including diodes, transistors, and photovoltaic cells.
In Schottky junctions, where the semiconductor is n-type, applying a positive voltage to the metal relative to the semiconductor reduces its Fermi...
In Schottky junctions, where the semiconductor is n-type, applying a positive voltage to the metal relative to the semiconductor reduces its Fermi...
282
Switching of BJT
458
Switching behavior in Bipolar Junction Transistors (BJTs) is a fundamental aspect utilized in various electronic circuits, particularly for digital logic applications like switches and amplifiers. In a typical switching circuit, a BJT alternates between cut-off and saturation modes, corresponding to the "off" and "on" states, respectively, thus behaving like an ideal switch.
Cut-off Mode ("Off" State): In this state, both the emitter-base and collector-base junctions are...
Cut-off Mode ("Off" State): In this state, both the emitter-base and collector-base junctions are...
458
Propagation Speed of Electromagnetic Waves
3.4K
Electromagnetic waves are consistent with Ampere's law. Assuming there is no conduction current Ampere's law is given as:
3.4K
Standing Electromagnetic Waves
1.6K
Electromagnetic waves can be reflected; the surface of a conductor or a dielectric can act as a reflector. As electric and magnetic fields obey the superposition principle, so do electromagnetic waves. The superposition of an incident wave and a reflected electromagnetic wave produces a standing wave analogous to the standing waves created on a stretched string.
Suppose a sheet of a perfect conductor is placed in the yz-plane, and a linearly polarized electromagnetic wave traveling in the...
Suppose a sheet of a perfect conductor is placed in the yz-plane, and a linearly polarized electromagnetic wave traveling in the...
1.6K
Biasing of FET
314
Biasing a Junction Field Effect Transistor (JFET) is crucial for setting operational parameters and ensuring efficient functioning in electronic circuits. JFETs are characterized by using a single carrier type in N-channel or P-channel configurations, where the channel is surrounded by PN junctions. These junctions are central to the device's ability to control current flow.
In an N-channel JFET, the structure consists of N-type material forming the channel on a P-type substrate, with the...
In an N-channel JFET, the structure consists of N-type material forming the channel on a P-type substrate, with the...
314
Mesh Analysis for AC Circuits
396
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...
396


