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相关概念视频

Common Leveling Mistakes and Errors01:17

Common Leveling Mistakes and Errors

71
A survey team is tasked with determining the elevation difference between points Point A and Point B, separated by uneven terrain. They use a leveling instrument and a leveling rod.Common MistakesMisreading the Rod: During a backsight reading at Point A, the instrumentman observes the rod partially obscured by tall grass. Instead of reading 1.135 m, they mistakenly record 1.735 m due to the misalignment of the crosshair with the wrong graduation. This error adds 0.600 m to all subsequent...
71
Errors in Global Positioning System01:26

Errors in Global Positioning System

44
Global Positioning System (GPS) technology has revolutionized navigation and positioning, but its accuracy is often compromised by various errors. These errors, stemming from environmental, satellite, and receiver-related factors, require careful mitigation to ensure reliable performance across applications.Atmospheric ErrorsGPS signals travel through the Earth’s ionosphere and troposphere, introducing delays which affect accuracy. The ionosphere is strongly influenced by charged particles,...
44
Types of Global Positioning System Surveys01:30

Types of Global Positioning System Surveys

55
GPS surveying methods vary in application, accuracy, and data collection techniques, catering to diverse surveying and mapping needs. Static GPS, kinematic GPS, and real-time kinematic (RTK) surveying are widely used. Each technique offers distinct advantages.Static GPS involves placing one receiver at a known reference point and another at the target point. It collects exact positional data by observing multiple satellite ranges over an extended period, achieving centimeter-level accuracy for...
55
Field Application of Global Positioning System01:28

Field Application of Global Positioning System

43
The Global Positioning System (GPS) has become an indispensable tool in fieldwork, offering unparalleled precision and efficiency for surveying, navigation, and infrastructure development. By harnessing signals from a constellation of satellites, GPS receivers determine the location of objects with remarkable speed and accuracy, often completing calculations within a second.Advantages of Modern GPS TechnologyContemporary GPS receivers are designed to meet the practical demands of field...
43
Design Example: Identifying the Locations of Monuments in the Field Using Global Positioning System Device01:30

Design Example: Identifying the Locations of Monuments in the Field Using Global Positioning System Device

27
Surveyors use Global Positioning System (GPS) technology to measure the precise location and elevation of points on Earth. In a recent survey, GPS receivers were used to determine the coordinates and elevations of two park monuments. The process involved careful mission planning, data collection, and correction to ensure accuracy. The survey began with mission planning to identify optimal satellite visibility and minimize Position Dilution of Precision (PDOP). A geodetic control point...
27
Leveling Equipment01:18

Leveling Equipment

82
As leveling involves measuring vertical distances relative to a horizontal line of sight, it requires a graduated rod, called a level rod, for vertical measurements and an instrument called a level for a horizontal sight line. A level includes a high-powered telescope with a mechanism for leveling to ensure the line of sight is horizontal when the bubble in the spirit level is centered. Leveling rods, made of wood, metal, or fiberglass, are graduated in feet or meters and commonly used in two-...
82

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Updated: Jun 26, 2025

A Protocol for Real-time 3D Single Particle Tracking
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快速代射手在城市地形上使用射线造进行定位.

Matthias Ospel1, Cyril Blonde-Weinmann1, Pascal Hamery1

  • 1French-German Research Institute of Saint-Louis, Saint-Louis, 68300, France.

The Journal of the Acoustical Society of America
|May 8, 2024
PubMed
概括

本研究介绍了一种新的实时声学事件定位方法,用于城市环境,消除了预计算. 该技术使用射线造和图表搜索算法来准确识别声源,而无需先前数据匹配.

科学领域:

  • 声学 声学 在声学方面
  • 信号处理 信号处理
  • 计算物理 计算物理

背景情况:

  • 在城市地形中传统的声学事件定位通常需要广泛的预计算.
  • 现有的方法可能是计算密集型和耗时的,限制实时应用.

研究的目的:

  • 开发一种实时的方法,用于定位城市环境中的冲动声学事件.
  • 消除了对时间匹配或冲动响应匹配等预计算阶段的需求.

主要方法:

  • 使用射线造通过边界离散计算波方程解决方案.
  • 使用视线检查来形成加权图.
  • 应用A*搜索算法来计算传播时间,并计算沿 eigenrays 的波幅.

主要成果:

  • 成功演示了冲动声学事件的实时定位.
  • 通过使用无人监视地面传感器的枪口爆炸数据验证了该方法.
  • 根据到达的时间和幅度差异评估的成本函数.

结论:

  • 提出的基于射线的代定位方法对复杂的城市地形中的实时声学事件检测是有效的.
  • 该方法为需要预计算的传统方法提供了一个计算效率高的替代方案.

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  • 该研究为在具有挑战性的环境中进行声学监测和源定位提供了强大的框架.