Design of Algorithm Control For Monitoring System And Control Bridge Based Internet of Things (IoT)

Farida Iasha, P. A. Darwito
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引用次数: 4

Abstract

Currently, the government is trying to improve road infrastructure in the form of tolls and bridges. In its construction design, the general bridge age is planned to have a life span of 100 years for large bridges and 50 years as the lifespan limit [1]. Over time the bridge will experience changes caused by movement from nature, bridge loads, bridge construction structures, excessive vibration, and so on [1]. One of the causes of a bridge collapse is a load that exceeds the capacity [2]. For example, the case of the ring bridge in Tuban district collapsed, because the vehicle load exceeded the bridge's capacity. Regarding the case of a bridge collapse in Tuban, it inspired the idea to collect, consider and maintain every bridge in Indonesia. If there is a bridge that fixes the collapse, repair activities can be carried out in Indonesia. In this research, a design algorithm was made, in which the compilation of devices mounted by the bridge so as not to exceed the maximum bridge load capacity. Vehicles entering the bridge have been indexed by several variables within 24 hours. Some of these variables are time, vehicle identity consisting of the license plate number, type of vehicle, vehicle weight and index. Design a bridge monitoring system and Internet-based (IoT) bridge monitoring algorithm. The truth of the algorithm, a simulation program was created using a visual studio, a database using MySQL and a website over base application. But in designing this algorithm, analysis is needed in determining the number of accelerometer sensors. The purpose of this algorithm system is bridge capability so that the weight of the incoming vehicle is not much or exceeds the bridge's capability limit. The validation of the design of this algorithm is to compare the workings of the standard algorithm. The results of this study are the creation of an algorithm for the Internet of Things (IoT) based monitoring and control systems that can provide information about bridges in real-time. This research can help the government transportation department especially inland transportation, one of the online and real-time supply monitoring solutions. Besides, this research can be used as a bridge management and maintenance system so that the bridge can last longer.
基于物联网的监控系统和控制桥的算法控制设计
目前,政府正试图以收费和桥梁的形式改善道路基础设施。在其施工设计中,桥梁的一般年龄规划为大型桥梁的寿命为100年,寿命上限为50年[1]。随着时间的推移,桥梁将经历由自然运动、桥梁荷载、桥梁施工结构、过度振动等引起的变化[1]。桥梁倒塌的原因之一是荷载超过承载能力[2]。例如,吐蕃地区环形桥倒塌的案例,是因为车辆荷载超过了桥梁的承载能力。关于图班的一座桥梁倒塌的案例,它激发了收集、考虑和维护印度尼西亚每一座桥梁的想法。如果有桥梁可以修复坍塌,则可以在印度尼西亚进行修复活动。在本研究中,提出了一种设计算法,该算法对桥梁安装的设备进行编制,使其不超过桥梁的最大承载能力。进入大桥的车辆在24小时内被几个变量编入索引。其中一些变量是时间,车辆身份包括车牌号码,车辆类型,车辆重量和指标。设计一个桥梁监控系统和基于互联网(IoT)的桥梁监控算法。为了验证算法的正确性,使用visual studio创建了一个仿真程序,使用MySQL创建了一个数据库,并在基础应用程序上创建了一个网站。但在设计该算法时,需要对加速度计传感器数量的确定进行分析。该算法系统的目的是为了保证桥梁的通行能力,使进入的车辆重量不大或超过桥梁的通行能力限制。本算法设计的验证是通过比较标准算法的工作原理。这项研究的结果是为基于物联网(IoT)的监测和控制系统创建了一种算法,可以实时提供有关桥梁的信息。本研究可以帮助政府交通运输部门特别是内陆交通运输部门提供一种在线、实时的供应监控解决方案。此外,本研究还可作为桥梁管理和维修系统,使桥梁的使用寿命更长。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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