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相关概念视频

Network Function of a Circuit01:25

Network Function of a Circuit

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Frequency response analysis in electrical circuits provides vital insights into a circuit's behavior as the frequency of the input signal changes. The transfer function, a mathematical tool, is instrumental in understanding this behavior. It defines the relationship between phasor output and input and comes in four types: voltage gain, current gain, transfer impedance, and transfer admittance. The critical components of the transfer function are the poles and zeros.
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Discrete Fourier Transform01:15

Discrete Fourier Transform

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The Discrete Fourier Transform (DFT) is a fundamental tool in signal processing, extending the discrete-time Fourier transform by evaluating discrete signals at uniformly spaced frequency intervals. This transformation converts a finite sequence of time-domain samples into frequency components, each representing complex sinusoids ordered by frequency. The DFT translates these sequences into the frequency domain, effectively indicating the magnitude and phase of each frequency component present...
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Discrete-Time Fourier Series01:20

Discrete-Time Fourier Series

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The Discrete-Time Fourier Series (DTFS) is a fundamental concept in signal processing, serving as the discrete-time counterpart to the continuous-time Fourier series. It allows for the representation and analysis of discrete-time periodic signals in terms of their frequency components. Unlike its continuous counterpart, which utilizes integrals, the calculation of DTFS expansion coefficients involves summations due to the discrete nature of the signal.
For a discrete-time periodic signal x[n]...
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Frequency-Domain Interpretation of PD Control01:24

Frequency-Domain Interpretation of PD Control

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Proportional-Derivative (PD) controllers are widely used in fan control systems to improve stability and performance. A fan control system can be effectively represented using a Bode plot to illustrate the impact of a PD controller through its transfer function. The Bode plot visually conveys how PD control modifies the fan's response across various frequencies, providing a frequency domain interpretation of the controller's behavior.
The proportional control gain, combined with the...
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Atomic Emission Spectroscopy: Overview01:20

Atomic Emission Spectroscopy: Overview

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Atomic emission spectroscopy (AES) is an analytical technique used to determine the elemental composition of a sample by analyzing the light emitted from excited atoms. In AES, atoms in a sample are excited to higher energy levels by thermal energy from high-temperature sources, such as plasma, arcs, or sparks. When these excited atoms return to lower energy states, they emit light at specific wavelengths characteristic of each element. The resulting atomic emission spectrum, which consists of...
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Properties of Fourier Transform I01:21

Properties of Fourier Transform I

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The application of Fourier Transform properties in radio broadcasting is multifaceted, enabling significant advancements in the way signals are transmitted and received. Key areas where these properties are utilized include simultaneous multi-channel transmission, audio clip speed adjustments, live broadcast delays for different time zones, audio frequency adjustments, and signal demodulation.
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Updated: Feb 21, 2026

Data Acquisition and Analysis In Brainstem Evoked Response Audiometry In Mice
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频率传输系统的噪声分析方法使用ADEV与EMD-WTT结合使用.

Xuan Yang, Junhui Li, Bin Luo

    Optics express
    |February 20, 2026
    PubMed
    概括

    本研究引入了一种新方法,将艾伦偏差 (ADEV) 与波形转换实证模式分解 (EMD-WT) 结合起来,用于分析频率传输系统中的噪声. 这种方法通过提供时间频率细节和数值稳定性见解来增强噪声歧视.

    科学领域:

    • 信号处理 信号处理
    • 计量学 计量学 计量学
    • 电信 电信服务 电信服务 电信服务

    背景情况:

    • 精确的频率传输需要高信号相位稳定性.
    • 长途信号传播引入各种噪声组件,如热噪声和环境干扰.
    • 传统的艾伦偏差 (ADEV) 提供了数值稳定性,但缺乏时间频率细节.

    研究的目的:

    • 开发一个全面的评价系统,用于频率传输中的噪声.
    • 为了克服ADEV在提供时间频率特征方面的局限性.
    • 为了使噪声类型及其时间频率属性的同时表征.

    主要方法:

    • 艾伦偏差 (ADEV) 与波形变形实证模式分解 (EMD-WT) 的整合.
    • 开发一种用于双域噪声分析的新型分析框架.
    • 该框架应用于频率传输系统.

    主要成果:

    • 在噪音歧视方面实现了前所未有的双域分辨率.
    • 能够同时描述噪声类型和时间频率属性.
    • 提供了一个更完整的评估系统,超出了数值ADEV.

    结论:

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    • 协同的ADEV和EMD-WT方法提供了卓越的噪音分析能力.
    • 这种新的框架显著提高了对精确频率传输中的噪声的理解.
    • 该方法为信号稳定性和噪声表征提供了一个完整的评估系统.