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相关概念视频

Parallel Resonance01:23

Parallel Resonance

505
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:
505
Double Resonance Techniques: Overview01:12

Double Resonance Techniques: Overview

680
Double resonance techniques in Nuclear Magnetic Resonance (NMR) spectroscopy involve the simultaneous application of two different frequencies or radiofrequency pulses to manipulate and observe two distinct nuclear spins. One important application of double resonance is spin decoupling, which selectively suppresses coupling with one type of nucleus while observing the NMR signal from another nucleus, simplifying the spectrum and enhancing resolution.
Spin decoupling is usually achieved by...
680
Sound Waves: Interference00:53

Sound Waves: Interference

4.5K
Sound waves can be modeled either as longitudinal waves, wherein the molecules of the medium oscillate around an equilibrium position, or as pressure waves. When two identical waves from the same source superimpose on each other, the combination of two crests or two troughs results in amplitude reinforcement known as constructive interference. If two identical waves, that are initially in phase, become out of phase because of different path lengths, the combination of crests with troughs...
4.5K
Interference: Path Lengths01:10

Interference: Path Lengths

1.8K
Consider two sources of sound, that may or may not be in phase, emitting waves at a single frequency, and consider the frequencies to be the same.
Two special sources may be considered when they are in phase. This can be easily achieved by feeding the two sources from the same source. An example would be synchronizing the two speakers by feeding them with the same source, such as the sound waves produced by a tuning fork. This setup ensures that the two sources have the same frequency and are...
1.8K
Inductively Coupled Plasma-Mass Spectrometry (ICP-MS): Interferences01:20

Inductively Coupled Plasma-Mass Spectrometry (ICP-MS): Interferences

1.2K
Inductively coupled plasma–mass spectrometry (ICP–MS) is a highly selective and sensitive technique for accurate elemental analysis. Though the analysis of ICP–MS mass spectra is comparatively straightforward, it is affected by spectroscopic and non-spectroscopic interferences. Spectroscopic interferences arise when the plasma contains ionic species with an m/z value the same as the analyte ion. Spectroscopic interference can be categorized as isobaric, polyatomic ions, and...
1.2K
¹³C NMR: Distortionless Enhancement by Polarization Transfer (DEPT)01:20

¹³C NMR: Distortionless Enhancement by Polarization Transfer (DEPT)

1.6K
When proton-coupled carbon-13 spectra are simplified by a broadband proton decoupling technique, structural information about the coupled protons is lost. Distortionless enhancement by polarization transfer (DEPT) is a technique that provides information on the number of hydrogens attached to each carbon in a molecule. While the DEPT experiment utilizes complex pulse sequences, the pulse delay and flip angle are specifically manipulated. The resulting signals have different phases depending on...
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相关实验视频

Updated: Jan 11, 2026

Shaping the Amplitude and Phase of Laser Beams by Using a Phase-only Spatial Light Modulator
08:39

Shaping the Amplitude and Phase of Laser Beams by Using a Phase-only Spatial Light Modulator

Published on: January 28, 2019

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基于多极化阵列的方法来抑制主环中的非静止干扰.

Jie Wang1, Shujuan Ding1, Na Wei1

  • 1China Research Institute of Radiowave Propagation, Qingdao 266107, China.

Sensors (Basel, Switzerland)
|November 13, 2025
PubMed
概括

这项研究引入了一种使用多极化数组的新型干扰抑制方法. 它通过利用信号偏振来有效地减轻非静止主叶干扰,而不需要目标参数估计.

科学领域:

  • 信号处理 信号处理
  • 电磁学 电磁学 电磁学 电磁学
  • 阵列信号处理 阵列信号处理

背景情况:

  • 非静止的主叶干扰在信号检测方面构成了重大挑战.
  • 现有的方法往往需要复杂的目标参数估计,限制现实世界的适用性.

研究的目的:

  • 开发一种用于非静止主叶干扰的干扰抑制技术.
  • 在没有目标参数估计的情况下利用多极化数组信息.

主要方法:

  • 一种基于多极化阵列的新干扰抑制方法.
  • 通过匹配过计算目标转向向量.
  • 从时间频域中提取高能频点,以获得光束成型的时间频共变矩阵.

主要成果:

  • 拟议的方法有效地抑制了非静止的主叶干扰.
  • 从多极化阵列中杆信号偏振信息.
  • 在极化域中证明了成功的干扰抑制.

结论:

  • 该方法有效地通过利用信号偏振来抑制非静止的主叶干扰.
  • 它不需要估计目标极化参数,因此适用于已知的波形场景.
关键词:
梁成型 梁成型 梁成型 梁成型主叶片干扰干扰主要叶片干扰匹配的过器匹配的过器多极化数组是一个多极化数组.不稳定的干扰是不稳定的干扰.时间频率分析

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  • 这种方法提高了复杂干扰环境中的检测性能.