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相关概念视频

Doppler Effect - II01:05

Doppler Effect - II

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The Doppler effect has several practical, real-world applications. For instance, meteorologists use Doppler radars to interpret weather events based on the Doppler effect. Typically, a transmitter emits radio waves at a specific frequency toward the sky from a weather station. The radio waves bounce off the clouds and precipitation and travel back to the weather station. The radio frequency of the waves reflected back to the station appears to decrease if the clouds or precipitation are moving...
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The limit of detection (LOD) is the smallest amount of analyte that can be distinguished from the background noise. The LOD value corresponds to the concentration at which the analyte signal is three times larger than the standard deviation of the blank signal. Below this value, the analyte signal cannot be differentiated from the background noise. It is calculated by dividing the calibration slope by 3 times the standard deviation of the blank signals.
The LOD indicates the presence or absence...
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Time-Domain Interpretation of PD Control01:07

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Proportional-Derivative (PD) control is a widely used control method in various engineering systems to enhance stability and performance. In a system with only proportional control, common issues include high maximum overshoot and oscillation, observed in both the error signal and its rate of change. This behavior can be divided into three distinct phases: initial overshoot, subsequent undershoot, and gradual stabilization.
Consider the example of control of motor torque. Initially, a positive...
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Frequency-Domain Interpretation of PD Control01:24

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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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Linear Approximation in Frequency Domain01:26

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Linear systems are characterized by two main properties: superposition and homogeneity. Superposition allows the response to multiple inputs to be the sum of the responses to each individual input. Homogeneity ensures that scaling an input by a scalar results in the response being scaled by the same scalar.
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The Doppler effect and Doppler shift were named after the Austrian physicist and mathematician Christian Johann Doppler in 1842, who conducted experiments with both moving sources and moving observers. Consider an observer standing on a street corner, observing an ambulance with a siren sound passing by at a constant speed. The observer experiences two characteristic changes in the sound of the siren. Initially, the sound increases in loudness as the ambulance approaches and decreases in...
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相关实验视频

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Quantum State Engineering of Light with Continuous-wave Optical Parametric Oscillators
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通过延迟多普勒解进行跨域OTFS检测:降低复杂性的设计和性能分析.

Mengmeng Liu1, Shuangyang Li2, Baoming Bai1

  • 1State Key Laboratory of ISN, Xidian University, Xi'an 710071, China.

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概括

对正交时频空间 (OTFS) 调制的新检测方法通过分离延迟和多普勒效应来降低复杂性. 这种方法实现了接近最佳的错误性能,计算成本显著降低.

关键词:
LMMSE LMMSE 在线观看这就是OTFS的OTFS.精灵辅助的战略策略代检测检测的反复检测.将干扰视为噪音策略.

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科学领域:

  • 无线通信无线通信
  • 信号处理 信号处理

背景情况:

  • 坐标时频空间 (OTFS) 调制在高多普勒和延迟扩散通道中提供了优势.
  • 现有的OTFS检测方法可能是计算密集的.

研究的目的:

  • 为OTFS调制提出一个复杂度较低的代检测方案.
  • 为了提高效率,利用时间和延迟多普勒域中的通道属性.

主要方法:

  • 在时间域有效通道中的解延迟和多普勒效应.
  • 应用一个缩小大小的线性最小平均平方误差 (LMMSE) 过器.
  • 利用跨域代和自值分解来降低复杂性.

主要成果:

  • 提出的方法有效地消除了延迟效应,并最大限度地减少了多普勒效应.
  • 计算复杂性是独立于代次数的.
  • 在时间和延迟多普勒域中观察到微不足道的估计偏差.

结论:

  • 拟议的降低复杂度检测方案实现了接近最佳的错误性能.
  • 与最佳检测相比,显著降低了计算复杂度.