课题基金 / 基金详情

Derivation of analysis- and synthesis-methods to manage uncertainty in the development of mechatronic systems with sensor integrating machine elements

Derivation of analysis- and synthesis-methods to manage uncertainty in the development of mechatronic systems with sensor integrating machine elements
推导分析和综合方法,以管理具有集成机器元件的传感器的机电一体化系统开发中的不确定性
批准号:
426030644
负责人:
Professor Dr.-Ing. Eckhard A. Kirchner
金额:
$0.0万
依托单位国家:
德国
项目类别:
Research Grants
财政年份:
2019
资助国家:
德国
项目状态:
已结题
起止时间:
2018-12-31 至 2022-12-31

项目摘要

项目成果

Professor Dr.-Ing. Eckhard A. Kirchner的其他基金

相似基金

相关文献

中文摘要
翻译
将传感器集成到标准化的机器元件中,有望大大加快机械过程中的现场测量。由于机器元件通过其标准化接口促进传感器的集成,因此将这些具有附加感觉功能的机器元件称为传感器集成机器元件(SiME)是合适的。关于机械元件本身的应力水平的知识并不重要,但它是更好地理解系统行为和操作条件的关键。机电系统的系统边界包括SiME及其直接设计附近以及能够实现电信号和能量传递的设计元件。无论集成传感器如何,机器元件都需要提供其通常的功能,它监测系统中的测量量并将信号传递到再次受到不确定性影响的传输设备。信号传输通过电子元件(电缆和连接器)实现,也通过设计元件(外壳、轴或轴承)的电气特性实现。在系统边界处,(失真的)信号被传送到连接到系统控制单元的传统信号传输路径。包括SiME的完整传输路径以及其能量供应和信号传输到过程不同的关节是相关的。该项目的目标是为机电系统的分析和综合提供方法和设计指南,从而实现使用SiME进行测量量和信号传输的可靠和可重复的数据采集。该项目的重点是管理由于机械,热,影响包括SiME在内的整个传输路径的化学、静电和电磁干扰。传输路径覆盖了包括SiME和信号传输路径在内的机械部分。原位位置消除了干扰,与集成传感器相关的额外干扰需要得到控制。SiME本身的产品开发不是项目的一部分,现有的概念将被利用并置于系统环境中。此外,SiME的生产、部件和功能可靠性被排除在外。因此,需要回答三个问题:1.如何以结构化的方式识别影响SiME完整传输路径的相关干扰?2、哪些干扰会导致信号在传输过程中发生变化,如何定性地描述干扰的影响?3.可以推导出哪些基于SiME的机电一体化系统综合的设计准则?SiME设计的第一个通用要求是否可识别?该项目基于机械工程中承载系统的不确定性管理方法,这些方法针对具有机械和电子传输路径的机电一体化系统进行了增强。
英文摘要
The integration of sensors into standardized machine elements is expected to significantly accelerate in-situ measurements in mechanical processes. Since machine elements facilitate the integration of sensors by their standardized interfaces it is suitable to call these machine elements with additional sensorial functions for sensor integrating machine elements (SiME). The knowledge about the stress level of the machine element itself is of no interest but it is the key to better understand system behavior and operational conditions.The system boundary of the mechatronic system includes the SiME and its direct design vicinity as well as design elements enabling electric signal and energy transfer. The machine elements need to deliver their usual functions regardless the integrated sensor, it monitor a measuring quantity in the system and delivers a signal to transferring device being again affected by uncertainty. The signal transfer is realized by means of electronic components (cables and connectors) but also by the electric properties of design elements (housing, shafts or bearings). At the system boundary a (distorted) signal is delivered to a conventional signal transfer path connecting to a system control unit. The full transfer path comprising the SiME as well as its energy supply and signal transfer to the process distinct joint is relevant.Target of this project is to provide methods and design guidelines for analysis and synthesis of mechatronic systems, enabling a reliable and reproducible data acquisition of measuring quantities and signal transfer using SiME.Focal point of the project is the management of uncertainty as a result of mechanical, thermal, chemical, electrostatic and electromagnetic disturbances affecting the full transfer path including an SiME. The transfer path covers the mechanical part including the SiME and the signal transfer path. The in-situ position eliminates disturbances, the additional disturbances associated to the sensor integrated need to be kept under control. The product development of SiME itself is not part of the project, existing concept will be exploited and placed in a system context. Furthermore, production, component and functional reliability of the SiME are excluded.Hence, three question are to be answered:1.: How to identify relevant disturbances influencing the full transfer path of the SiME in a structured way?2.: Which disturbances cause alterations of the signal during its transfer and how can one describe the effect of disturbances qualitatively?3.: Which design guidelines for the synthesis of mechatronic systems with SiME can be derived? Are first generic requirements for the design of SiME identifiable?The project bases on methods for the management of uncertainty of load carrying systems in mechanical engineering, these are enhanced for mechatronic systems with combined mechanical and electronic transfer paths.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
Early detection of damage to rolling bearings by electrical impedance measurement
MiMoSe - Microelectronic modular system for sensor-integrating machine elements
Product development with sensor integrating machine elements - Managing uncertainty associ-ated to in-situ acquired sensor data in mechatronic systems
Operating condition-dependent model for describing the electrical impedance of rolling bearings for sensory utilization
国内基金
海外基金
Scalable Learning and Optimization: High-dimensional Models and Online Decision-Making Strategies for Big Data Analysis
Intelligent Patent Analysis for Optimized Technology Stack Selection:Blockchain BusinessRegistry Case Demonstration
  • 批准号:
    --
  • 项目类别:
    外国学者研究基金项目
  • 资助金额:
    --
  • 批准年份:
    2024
  • 负责人:
    USHARANI HAREESH GOVINDARA JAN
  • 依托单位:
利用全基因组关联分析和QTL-seq发掘花生白绢病抗性分子标记
基于SERS纳米标签和光子晶体的单细胞Western Blot定量分析技术研究
  • 批准号:
    31900571
  • 项目类别:
    青年科学基金项目
  • 资助金额:
    24.0万元
  • 批准年份:
    2019
  • 负责人:
    刘兵
  • 依托单位: