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相关概念视频

Interference: Path Lengths01:10

Interference: Path Lengths

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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...
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Beams with Symmetric Loadings01:15

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The moment-area method is an analytical tool used in structural engineering to determine the slope and deflection of beams under various loads. Consider a cantilever with a concentrated load and moment at the free end. The first step is constructing a free-body diagram to calculate the reactions at the fixed end. Next, the bending moment diagram is plotted to visualize how the bending moment varies along the beam's length, focusing on points where the bending moment equals zero.
The M/EI...
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Interference and Superposition of Waves01:07

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When two waves of the same nature occur in the same region simultaneously, they result in interference. Interference of waves implies that the net effect of the waves is the sum of the individual waves' effects. However, it does not imply that the individual waves affect the propagation of other waves.
Interference occurs in mechanical waves, such as sound waves, waves on a string, and surface water waves. Mechanical waves correspond to the physical displacement of particles. Hence,...
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Beams with Unsymmetric Loadings01:17

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Analyzing a supported beam under unsymmetrical loadings is essential in structural engineering to understand how beams respond to varied force distributions. This analysis involves calculating the deflection and identifying points where the slope of the beam is zero, which are crucial for ensuring structural stability and functionality.
The first moment-area theorem determines the slope at any point on the beam. This theorem indicates that the change in slope between two points on a beam...
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Deflection of a Beam01:19

Deflection of a Beam

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Accurately determining beam deflection and slope under various loading conditions in structural engineering is crucial for ensuring safety and structural integrity. Singularity functions offer a streamlined approach to analyzing beams, especially when multiple loading functions complicate the bending moment equation.
Singularity functions, described in an earlier lesson, are powerful mathematical tools that represent discontinuities within a function commonly encountered in structural loading...
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Singularity Functions for Bending Moment01:18

Singularity Functions for Bending Moment

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Singularity functions simplify the representation of bending moments in beams subjected to discontinuous loading, allowing the use of a single mathematical expression. For a supported beam AB, with uniform loading from its midpoint M to the right side end B, the approach involves conceptual 'cuts' at specific points to determine the bending moment in each segment. By cutting the beam at a point between A and M, the bending moment for the segment before reaching midpoint M is represented...
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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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修改简单的天线模式模型,用于在大型多输入多输出系统中进行光束间干扰评估.

Jarosław Wojtuń1, Cezary Ziółkowski1, Jan M Kelner1

  • 1Institute of Communications Systems, Faculty of Electronics, Military University of Technology, 00-908 Warsaw, Poland.

Sensors (Basel, Switzerland)
|November 25, 2023
PubMed
概括

一种新方法通过修改天线图案来改进第五代 (5G) 系统的信号与干扰比 (SIR) 评估. 这减少了交叉光束干扰,这对于提高大规模多输入多输出 (MIMO) 性能至关重要.

关键词:
5G是什么意思? 5G是什么意思?天线光束图案的天线束图案.跨光束间的干扰干扰.这是一个巨大的MIMO.多圆形传播模型 (MPM)信号与干扰比 (SIR) 是指信号与干扰的比.无线通信是无线通信的一种方式.

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相关实验视频

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科学领域:

  • 无线通信工程 无线通信工程
  • 天线理论和设计.
  • 信号处理 信号处理

背景情况:

  • 交叉光束干扰是5G系统中大规模MIMO的重要限制.
  • 准确的干扰评估对于无线网络的空间规划至关重要.
  • 现有的天线图案模型面临着改变光束方向和复杂图案的挑战.

研究的目的:

  • 建议对用于干扰评估的简单天线模式模型进行新的修改.
  • 开发一种原始的方法来评估相邻光束的信号与干扰比率 (SIR).
  • 为了应对不断变化的辐射方向和复杂的天线图案所带来的挑战.

主要方法:

  • 通过调整方向性,对简单的天线图案模型进行了新的修改.
  • 使用修改的模式,从相邻光束中评估SIR的原始方法.
  • 使用多圆形传播模型和3GPP大规模MIMO天线模式的模拟研究.

主要成果:

  • 拟议的修改允许独立于天线类型或结构的干扰评估.
  • 该方法精确评估SIR,误差不超过3dB (LOS) 和0.1dB (非LOS).
  • 模拟使用3GPP天线模式作为SIR错误分析的参考.

结论:

  • 修改简单的天线模式模型为5G系统中准确的干扰评估提供了可行的解决方案.
  • 开发的方法有效地减轻了与复杂的天线图案和光束方向变化相关的挑战.
  • 这种方法增强了无线网络中大规模MIMO的空间规划和性能优化.