Using a Signal Flow Analysis to Develop Prototypes of Sensing Machine Elements

E. Kirchner, S. Schork, G. Vorwerk-Handing, S. Vogel
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Abstract

A mandatory requirement for the concept of intelligent systems and of digital or cyber-physical twins is the availability of high-quality data. Therefore, the authors investigate the possibility to integrate sensors, actuators and information technologies in standardized machine elements such as screws, bearings and couplings. In this paper, the focus is on sensing machine elements, which are a sub-category of mechatronic machine elements. To gain insights about those in development as well as to verify and validate their functionality, prototypes are needed. Those prototypes should help the designer to gain knowledge about the product in development and they should preferably be developed with low efforts. Therefore, a method is proposed to analyse concepts of mechatronic machine elements, especially sensing machine elements, regarding critical aspects that may interfere with the functionality of the product. The method is based on analysing the flow of the signal that is used for the measurement, starting from its mechanical origin and ending at the analysis unit. Different examples of sensing machine elements are given in this article and the respective flow of the usable signal is analysed, leading to the identification of subsystems that can be tested individually. Based on this, prototypes for the subsystems are developed and introduced.
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利用信号流分析开发传感机械元件原型
智能系统和数字或网络物理孪生概念的强制性要求是高质量数据的可用性。因此,作者研究了将传感器、执行器和信息技术集成到标准化机器元件(如螺钉、轴承和联轴器)中的可能性。传感机械元件是机电一体化机械元件的一个子类。为了深入了解那些正在开发的产品,以及验证和确认它们的功能,需要原型。这些原型应该帮助设计师获得关于开发中的产品的知识,并且应该以低成本的方式开发。因此,提出了一种方法来分析机电机械元件的概念,特别是传感机械元件,关于可能干扰产品功能的关键方面。该方法基于对用于测量的信号流的分析,从其机械原点开始,到分析单元结束。本文给出了传感机器元件的不同实例,并分析了各自的可用信号流,从而确定了可以单独测试的子系统。在此基础上,开发并介绍了各子系统的原型。
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