移动应用作为敏捷记录系统(ARS)中的媒体监控

F. M. S. Nursuwars, Acep Irham Gufroni, N. Hiron, Rahmi Nur Shofa
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引用次数: 0

摘要

本文讨论了一种基于物联网(IoT)技术的运动敏捷性测量系统。现有敏捷度计的问题是,它们仍然使用秒表来测量时间,现有的工具只有几个垫子和很短的距离。本文的主要目的是设计一种更简单、能够与更多运动传感器节点协调的敏捷性测量系统。给出了运动传感器节点的活动图、事务数据库、方框图和硬件配置的设计结果。这项研究的结果是一个基于物联网的敏捷性测量系统,使用ESP8266模块,允许253个或更多的pad进行协调。活动图由三个主要参与者组成,即管理员/测试人员(教练)、测试培训人员(观察者)和运动员参与者。在基于物联网的敏捷性测量系统的数据库设计中,它由6个表组成,即3个主表和3个事务表。三个主表分别是“athletes”表、“mater_pad”表和“test_scheme”表。同时,三个事务表是“test_log”表、“test_pad”表和“test_agility”表。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mobile Application as Media Monitoring in the Agility Record System (ARS)
This paper discusses a proposed system for measuring athletic agility based on Internet of Things (IoT) technology. The problem with existing agility gauges is that they still use a stopwatch to measure time, and the existing tools only have a few pads and a short distance. The main objective of this paper is to propose the design of an agility measuring system that is simpler and has the ability to coordinate with more motion sensor nodes. This paper also presents the design results of activity diagrams, transaction databases, block diagrams, and hardware configurations of motion sensor nodes. The result of this research is an IoT-based agility measuring system using the ESP8266 module, allowing 253 or more pads to be coordinated. The activity diagram consists of three main actors, namely admin/tester (coach), tester trainer (observer), and athlete actor. In the database design of this IoT-based agility measuring system, it consists of 6 tables, namely three master tables and three transactional tables. The three master tables are the "athletes" table, the "mater_pad" table, the "test_scheme" table. Meanwhile, the three transactional tables are the "test_log" table, the "test_pad" table, the "test_agility" table.
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