Using Smartphones as a Measurement Platform in Geoscience Applications

Lívia Faria Sampaio, L. Veiga, Samir De Souza Oliveira Alves
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Abstract

Most modern smartphones come with a variety of sensors. Among them are the gyroscope, accelerometer, magnetometer, GNSS (Global Navigation Satellite Systems) receiver, and from 2020, most modern devices are also coupled with a Lidar (Light Detection and Ranging) sensor. These specific sensors allow to acquire data that enables the location and spatial orientation of the smartphone in relation to other objects, and also measure them. For this, it is important to understand how the principle of operation of these sensors occurs, as well as the respective raw data obtained and how to use these data from the sensors to get measurements of the elements of the physical surface of the Earth. This article aims to present a state of the art about the working principle of these sensors and presents the raw data from them. In addition, this article seeks to present an initial test on the quality of the orientation sensor, based on the comparison between the data obtained from this sensor and a total station with high angular precision (1 second). It was noted the occurrence of a systematic error in the observations of the horizontal directions, and an average discrepancy of 5.20° between the observations of the vertical angle. The use of sensors attached to smartphones can support in several activities of geoscience application, such as carrying out a prior survey of a given area of study, aiming to do a pre-analysis of geodetic networks, to carry out measurements of angles and distances for applications in terrain measurements, or even to assist the Geographic Information System (GIS) development.
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在地球科学应用中使用智能手机作为测量平台
大多数现代智能手机都配有各种传感器。其中包括陀螺仪、加速度计、磁力计、GNSS(全球导航卫星系统)接收器,从2020年起,大多数现代设备还配有激光雷达(光探测和测距)传感器。这些特定的传感器可以获取数据,从而确定智能手机相对于其他物体的位置和空间方向,并对其进行测量。为此,重要的是要了解这些传感器的工作原理是如何发生的,以及获得的各自的原始数据,以及如何使用传感器的这些数据来测量地球物理表面的元素。本文旨在介绍这些传感器的工作原理,并介绍它们的原始数据。此外,本文试图根据从该传感器获得的数据与具有高角度精度(1秒)的全站仪之间的比较,对方位传感器的质量进行初步测试。注意到,在水平方向的观测中出现了系统误差,在垂直角度的观测之间出现了5.20°的平均偏差。使用连接在智能手机上的传感器可以支持地球科学应用的几项活动,例如对特定研究领域进行预先调查,旨在对大地测量网络进行预先分析,为地形测量应用进行角度和距离测量,甚至协助地理信息系统的开发。
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来源期刊
Anuario do Instituto de Geociencias
Anuario do Instituto de Geociencias Social Sciences-Geography, Planning and Development
CiteScore
0.70
自引率
0.00%
发文量
45
审稿时长
28 weeks
期刊介绍: The Anuário do Instituto de Geociências (Anuário IGEO) is an official publication of the Universidade Federal do Rio de Janeiro (UFRJ – CCMN) with the objective to publish original scientific papers of broad interest in the field of Geology, Paleontology, Geography and Meteorology.
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