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Field Application of Global Positioning System01:28

Field Application of Global Positioning System

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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...
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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

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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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Measuring Acceleration Due to Gravity01:12

Measuring Acceleration Due to Gravity

515
Consider a coffee mug hanging on a hook in a pantry. If the mug gets knocked, it oscillates back and forth like a pendulum until the oscillations die out.
A simple pendulum can be described as a point mass and a string. Meanwhile, a physical pendulum is any object whose oscillations are similar to a simple pendulum, but cannot be modeled as a point mass on a string because its mass is distributed over a larger area. The behavior of a physical pendulum can be modeled using the principles of...
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Introduction to Global Positioning System01:30

Introduction to Global Positioning System

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The Global Positioning System (GPS) revolutionized positioning on Earth, providing precise location data through satellite ranging. The GPS system was developed in 1978 by the U.S. Department of Defense  for military use, and it became available for civilian applications in 1983, transforming fields including navigation, fleet management, and time synchronization for telecommunications systems.GPS consists of satellites in medium Earth orbit, about 20,200 kilometers above the surface,...
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Types of Global Positioning System Surveys01:30

Types of Global Positioning System Surveys

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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...
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相关实验视频

Updated: May 24, 2025

Using a Real-Time Locating System to Measure Walking Activity Associated with Wandering Behaviors Among Institutionalized Older Adults
04:13

Using a Real-Time Locating System to Measure Walking Activity Associated with Wandering Behaviors Among Institutionalized Older Adults

Published on: February 8, 2019

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不显眼的可穿戴系统用于负载垂直位置估计.

Nozhan Ghoreishi, Femi Olugbon, Dain LaRoche

    Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference
    |March 5, 2025
    PubMed
    概括

    本研究介绍了一种用户友好的可穿戴系统,用于在手动提升过程中准确测量负载垂直位置 (LVL),这是腰部疼痛 (LBP) 的关键因素. 该系统显著改进了现有的监测这一主要LBP风险因素的方法.

    科学领域:

    • 生物医学工程 生物医学工程
    • 职业健康 职业健康 职业健康
    • 可穿戴技术可穿戴技术

    背景情况:

    • 腰部疼痛 (LBP) 是一种普遍的肌肉骨疾病,手动抬物被确定为主要原因.
    • 监测负载垂直位置 (LVL) 的现有方法,这是一个关键的LBP风险因素,缺乏用户友好和准确性.

    研究的目的:

    • 开发和验证一个用户友好的可穿戴系统,用于准确的实时测量负载垂直位置 (LVL).
    • 解决当前技术在监测低背痛 (LBP) 的关键风险因素方面的局限性.

    主要方法:

    • 一个可穿戴系统,包括带有压力传感器和IMU的智能内,以及带有IMU和气压计的智能腕带.
    • 实施一种新的已知垂直位置更新 (KVLU) 方法,用于持续的气压计校准,以减轻漂移错误.

    主要成果:

    • 拟议的系统在LVL测量中实现了5.84厘米的平均绝对误差 (MAE).
    • 与最先进的技术相比,KVLU方法在校准气压计数据方面表现出更高的性能.

    结论:

    • 开发的可穿戴系统提供了一种实用且准确的解决方案,用于在手动提升任务期间监控LVL.
    • 这项技术有可能通过更好的风险评估和干预来减少腰部疼痛 (LBP) 的发生率.

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