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相关概念视频

Radius of Gyration of an Area01:12

Radius of Gyration of an Area

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The second moment of area, also known as the moment of inertia of area, is a crucial factor in understanding an object's resistance against bending deformation, or stiffness. To accurately estimate the second moment of area along any axis, one needs to concentrate all areas associated with that object into a thin strip, which should be placed parallel to that particular axis.
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Non-uniform Circular Motion01:22

Non-uniform Circular Motion

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In uniform circular motion, the particle executing circular motion has a constant speed, and the circle is at a fixed radius. However, not all circular motion occurs at a constant speed. A particle can travel in a circle and speed up or slow down, showing an acceleration in the direction of motion. In that case, the motion is called non-uniform circular motion, and an additional acceleration is introduced, which is in the direction tangential to the circle. 
For example, such...
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Generating Electromagnetic Radiations01:10

Generating Electromagnetic Radiations

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The German physicist Heinrich Hertz (1857–1894) was the first to generate and detect certain types of electromagnetic waves in the laboratory. Starting in 1887, he performed a series of experiments that confirmed the existence of electromagnetic waves and verified that they travel at the speed of light. Hertz used an alternating-current RLC (resistor-inductor-capacitor) circuit that resonated at a known frequency and connected it to a loop of wire. High voltages induced across the gap in...
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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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Electric Field of a Non Uniformly Charged Sphere01:22

Electric Field of a Non Uniformly Charged Sphere

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Gauss's law states that the electric flux through any closed surface equals the net charge enclosed within the surface. This law is beneficial for determining the expressions for the electric field for a particular charge distribution if the electric flux is known.
Consider a non-uniformly charged sphere, for which the density of charge depends only on the distance from a point in space and not on the direction. Such a sphere has a spherically symmetrical charge distribution. Here, the electric...
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Magnetic Field Due to Two Straight Wires01:18

Magnetic Field Due to Two Straight Wires

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Consider two parallel straight wires carrying a current of 10 A and 20 A in the same direction and separated by a distance of 20 cm. Calculate the magnetic field at a point "P2", midway between the wires. Also, evaluate the magnetic field when the direction of the current is reversed in the second wire.
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相关实验视频

Updated: Jul 12, 2025

Simulating Imaging of Large Scale Radio Arrays on the Lunar Surface
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基于均分布的两个同心环数组的连贯源的DOA估计.

Chuang Han1, Shenghong Guo1, Ning Yan1

  • 1Heilongjiang Province Key Laboratory of Laser Spectroscopy Technology and Application, Harbin University of Science and Technology, Harbin 150080, China.

Sensors (Basel, Switzerland)
|October 28, 2023
PubMed
概括
此摘要是机器生成的。

本研究引入了一种新方法,用于使用统一的圆形数组来估计连贯源的到达方向 (DOA). 增强的算法提高了宽带信号的本地化准确性.

关键词:
在 DOAA 完成.一致的来源.集中式环 阵列 阵列 集中式环 阵列

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Effective Analysis of Human Exposure Conditions with Body-worn Dosimeters in the 2.4 GHz Band
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Characterization of SiN Integrated Optical Phased Arrays on a Wafer-Scale Test Station
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相关实验视频

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Simulating Imaging of Large Scale Radio Arrays on the Lunar Surface

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Effective Analysis of Human Exposure Conditions with Body-worn Dosimeters in the 2.4 GHz Band
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Characterization of SiN Integrated Optical Phased Arrays on a Wafer-Scale Test Station
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科学领域:

  • 信号处理 信号处理
  • 阵列信号处理 阵列信号处理
  • 声学 声学 在声学方面

背景情况:

  • 传统的统一圆形数组算法在对连贯源的准确到达方向 (DOA) 估计方面存在困难.
  • 现有的方法具有较低的定位准确度,并且在有连贯信号的情况下表现不佳.

研究的目的:

  • 提出一种新的二维DOA估计算法,用于宽带信号中的连贯源.
  • 解决传统算法在准确定位连贯声音源方面的局限性.

主要方法:

  • 使用延迟数据频率估计,估计连贯声音源的中心频率.
  • 构建一个基于多循环相位模式概念的实值光束变压器.
  • 在光束空间中获得成本函数并执行对源定位的二维搜索.

主要成果:

  • 在各种频率和信号噪声比率上进行的模拟证明了算法的有效性.
  • 拟议的方法在到达方向估计方面实现了高精度.
  • 循环阵列分辨率的分析表明成功的性能.

结论:

  • 开发的算法显著提高了对连贯来源的DOA估计的准确性.
  • 拟议的方法为宽带DOA估计挑战提供了可靠的解决方案.
  • 这些发现证实了算法能够实现所需的本地化结果的能力.