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Using Low-Cost Sensors to Develop a High Precision Lifting Controller Device for an Overhead Crane—Insights and Hypotheses from Prototyping a Heavy Industrial Internet Project

机译:使用低成本传感器开发高精度提升控制器设备,用于架空起重机 - 洞察力和假设从原型工业互联网项目

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摘要

The subject of this study was the product development project creating a new innovative proof-of-concept (POC) prototype device that could control a connected industrial overhead crane in order to perform automatic or semi-automatic high precision lifts within a limited time frame. The development work focused on innovating a new measuring concept, which was parallel to finding suitable sensors for the application. Furthermore, the project resulted in a closed loop control system with Industrial Internet connected sensors and a user interface for factory workers. The prototyping journey is depicted to illustrate the decisions made during the product development project to contribute to both the pragmatic and the process discussion in the field of Industrial Internet. The purpose of this research was to explore and generate hypotheses for how new applications should be developed for heavy industry connected devices. The research question is: what are the implications of applying agile product development methods, such as Wayfaring, to heavy industrial machinery and Industrial Internet -based problems? The methodologies used in this paper, in addition to developing the device, are case study research and hypotheses generated from case studies. The hypotheses generated include that it is also possible to prototype large size connected machinery with low-cost and in a short time, and investment decisions for heavy Industrial Internet products become easier with concrete data from proof-of-concept prototypes by creating knowledge about the investment risk and the value proposition.
机译:本研究主题是产品开发项目,创建了一种新的创新概念验证(POC)原型设备,可以控制连接的工业架空起重机,以便在有限的时间内执行自动或半自动高精度升降机。开发工作侧重于创新新的测量概念,这是对寻找适当的应用的合适传感器。此外,该项目导致具有工业互联网连接传感器的闭环控制系统和工厂工人的用户界面。描绘了原型旅程,以说明产品开发项目中的决定,以促进工业互联网领域的务实和过程讨论。本研究的目的是探索和生成假设,了解如何为重型工业连接设备开发新的应用程序。研究问题是:应用敏捷产品开发方法的影响是什么,如途中,以沃德林,重工业机械和工业互联网的问题?除了开发设备之外,本文使用的方法是从案例研究中产生的案例研究和假设。产生的假设包括用低成本和短时间内的大尺寸连接的机械原型,并且通过创造了关于概念验证原型的具体数据,对重型工业互联网产品的投资决策变得更加容易投资风险与价值主张。

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