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相关概念视频

Methods of Obtaining Topography01:25

Methods of Obtaining Topography

44
Topography involves measuring and mapping land elevations, natural features, and artificial structures to create accurate representations of the terrain. Topographic surveying relies on traditional and modern methods, each with distinct advantages and limitations.Traditional Surveying Methods:Transit stadia surveys and plane table surveys were widely used traditional surveying methods. These techniques relied on instruments like theodolites and stadia rods for measuring distances and angles,...
44
Types of Global Positioning System Surveys01:30

Types of Global Positioning System Surveys

48
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...
48
Topographic Surveying and Contours01:29

Topographic Surveying and Contours

48
Topographic surveying is critical for documenting the Earth's surface, focusing on capturing elevations, slopes, and natural and man-made features. It is essential in construction planning, water resource management, and land-use analysis. The primary outcome of such surveys is a topographic map, which uses contour lines to visually represent the shape and slope of the terrain, providing valuable insights into the landscape's characteristics.Contour lines are fundamental to understanding the...
48
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

20
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...
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相关实验视频

Updated: May 31, 2025

Tracking Infiltration Front Depth Using Time-lapse Multi-offset Gathers Collected with Array Antenna Ground Penetrating Radar
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优化空中毫米波InSAR用于复杂的山地地形绘制.

Futai Xie1, Wei Wang2, Xiaopeng Sun3

  • 1Beijing Institute of Radio Measurement, Beijing 100854, China.

Sensors (Basel, Switzerland)
|January 25, 2025
PubMed
概括

空载毫米波InSAR系统能够在具有挑战性的山区高效地形测绘. 这项技术降低了成本,并确保了数据的准确性,克服了云覆盖和有限的数据收集窗口的局限性.

关键词:
在空中飞行的InSAR.复杂的山地地形,山地形复杂.稀疏的同步控制稀疏的同步控制地形绘制地形绘制地形绘制地形

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科学领域:

  • 地质科学 地质科学
  • 遥感 遥感 遥感 遥感
  • 这是一种摄影计量技术 (photogrammetry).

背景情况:

  • 高效地形数据采集至关重要,特别是在复杂的山区,由于天气和地形,数据收集窗口有限.
  • 传统的光谱在这样的环境中面临着全天候全天候数据采集的挑战.

研究的目的:

  • 调查空中毫米波干扰测量合成孔径雷达 (InSAR) 系统在具有挑战性的条件下有效地绘制地形地图的应用.
  • 通过先进的路线规划和减少地面控制要求,优化空中InSAR数据采集.

主要方法:

  • 利用空中毫米波InSAR系统进行全天候全天候数据采集.
  • 通过使用雷达几何学和SRTM DEM数据模拟停泊和影子效应来开发最佳飞行路径设计.
  • 检查技术,以最大限度地减少对山地地形同步地面控制点的需求.

主要成果:

  • 显著减少了现场工作和航空成本.
  • 确保了空载毫米波InSAR系统生成的山地表面数据的准确性.
  • 验证了快速地形数据采集的拟议方法的实际应用价值.

结论:

  • 空中毫米波InSAR是一种可行的解决方案,用于在困难的山区高效准确地形测绘.
  • 开发的路线规划和降低地面控制的方法提高了运营效率和成本效益.
  • 这项技术在恶劣条件下为大规模地形数据采集提供了实质性的实用价值.