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相关概念视频

Design Example01:23

Design Example

316
The innovation of touch-tone telephony revolutionized the telecommunications industry by replacing the traditional rotary dial with a dual-tone multi-frequency (DTMF) signaling system. This system uses a matrix-style keypad with buttons arranged in four rows and three columns, creating 12 distinct signals each assigned to a pair of frequencies. Each button press results in a simultaneous generation of two sinusoidal tones – one from a low-frequency group (697 to 941 Hz) and one from a...
316
Bandpass Sampling01:17

Bandpass Sampling

160
In signal processing, bandpass sampling is an effective technique for sampling signals that have most of their energy concentrated within a narrow frequency band. This type of signal is known as a bandpass signal. The key principle of bandpass sampling involves sampling the signal at a rate that is greater than twice the signal's bandwidth to prevent aliasing.
A bandpass signal has a spectrum with a lower frequency limit, denoted as ω1, and an upper frequency limit, denoted as ω2....
160
Upsampling01:22

Upsampling

200
Managing signal sampling rates is essential in digital signal processing to maintain signal integrity. A decimated signal, characterized by a reduced frequency range due to its lower sampling rate, can be upsampled by inserting zeros between each sample. This upsampling process expands the original spectrum and introduces repeated spectral replicas at intervals dictated by the new Nyquist frequency. To refine this zero-inserted sequence, it is passed through a lowpass filter with a cutoff...
200
Aliasing01:18

Aliasing

117
Accurate signal sampling and reconstruction are crucial in various signal-processing applications. A time-domain signal's spectrum can be revealed using its Fourier transform. When this signal is sampled at a specific frequency, it results in multiple scaled replicas of the original spectrum in the frequency domain. The spacing of these replicas is determined by the sampling frequency.
If the sampling frequency is below the Nyquist rate, these replicas overlap, preventing the original...
117
Reconstruction of Signal using Interpolation01:10

Reconstruction of Signal using Interpolation

167
Signal processing techniques are essential for accurately converting continuous signals to digital formats and vice versa. When a continuous signal is sampled with a period T, the resulting sampled signal exhibits replicas of the original spectrum in the frequency domain, spaced at intervals equal to the sampling frequency. To handle this sampled signal, a zero-order hold method can be applied, which creates a piecewise constant signal by retaining each sample's value until the next...
167
Time and frequency -Domain Interpretation of Phase-lead Control01:24

Time and frequency -Domain Interpretation of Phase-lead Control

76
Phase-lead controllers are commonly used in various control systems to enhance response speed and stability. Adjusting the brightness on a television screen offers a practical example of phase-lead control. When contrast is enhanced, a phase-lead controller is employed. Mathematically, phase-lead control is identified when the first parameter is smaller than the second.
The design of phase-lead control involves the strategic placement of poles and zeros to balance steady-state error and system...
76

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相关实验视频

Updated: Jun 2, 2025

Microwave Photonics Systems Based on Whispering-gallery-mode Resonators
12:18

Microwave Photonics Systems Based on Whispering-gallery-mode Resonators

Published on: August 5, 2013

16.9K

以光子学为辅助的模拟窗口和匹配的过.

Jichen Weng, Weiwei Liu, Mengwei Liu

    Optics letters
    |January 16, 2025
    PubMed
    概括

    这项研究使用微波光子学整合了宽带信号的窗口和匹配过. 这种新的模拟领域方法提高了雷达系统的处理速度和目标检测能力.

    科学领域:

    • 微波光子学 微波光子学
    • 信号处理 信号处理
    • 模拟集成电路 模拟集成电路

    背景情况:

    • 传统的雷达系统在高带宽信号的高效处理方面面临着挑战.
    • 整合窗口和匹配过对于提高雷达性能至关重要.
    • 模拟域处理在速度和复杂性降低方面提供了潜在的优势.

    研究的目的:

    • 提出和验证一个集成的模拟域方法用于窗口和匹配过.
    • 为了利用微波光子技术用于宽带信号处理.
    • 提高雷达系统在目标检测中的性能.

    主要方法:

    • 使用光学波导分散用于宽带信号的模拟窗口.
    • 使用表面声波过器 (SAWF) 进行无线电频率 (RF) 匹配过.
    • 整合光学和射频领域处理,以实现统一的模拟解决方案.

    主要成果:

    • 综合方法的成功模拟和实验验证.
    • 在1GHz的线性频率调制 (LFM) 信号中,达到19.55dB的峰值与侧叶比 (PSLR).
    • 观察到主叶宽度 (MLW) 扩大到0.16 ns,最大分散.

    更多相关视频

    Quantum State Engineering of Light with Continuous-wave Optical Parametric Oscillators
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    Quantum State Engineering of Light with Continuous-wave Optical Parametric Oscillators

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    Generation and Coherent Control of Pulsed Quantum Frequency Combs
    06:42

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    相关实验视频

    Last Updated: Jun 2, 2025

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    12:18

    Microwave Photonics Systems Based on Whispering-gallery-mode Resonators

    Published on: August 5, 2013

    16.9K
    Quantum State Engineering of Light with Continuous-wave Optical Parametric Oscillators
    09:23

    Quantum State Engineering of Light with Continuous-wave Optical Parametric Oscillators

    Published on: May 30, 2014

    14.4K
    Generation and Coherent Control of Pulsed Quantum Frequency Combs
    06:42

    Generation and Coherent Control of Pulsed Quantum Frequency Combs

    Published on: June 8, 2018

    8.9K

    结论:

    • 拟议的综合模拟方法有效地结合了窗口和匹配过.
    • 这种方法大大降低了雷达系统的处理负载.
    • 该方法提高了用于目标检测的宽带雷达系统的响应速度.