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Evaluation of control strategies in forming processes

机译:评估成型过程中的控制策略

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Products of forming processes are subject to quality fluctuations due to uncertainty in semi-finished part properties as well as process conditions and environment. An approach to cope with these uncertainties is the implementation of a closed-loop control taking into account the actual product properties measured by sensors or estimated by a mathematical process model. Both methods of uncertainty control trade off with a financial effort. In case of sensor integration the effort is the cost of the sensor including signal processing as well as the design and manufacturing effort for integration. In case of an estimation model the effort is mainly determined by the time and knowledge needed to derive the model, identify the parameters and implement the model into the PLC. The risk of mismatch between model and reality as well as the risk of wrong parameter identification can be assumed as additional uncertainty (model uncertainty). This paper evaluates controlled and additional uncertainty by taking into account process boundary conditions like the degree of fluctuations in semi-finished part properties. The proposed evaluation is demonstrated by the analysis of exemplary processes.
机译:由于半成品零件特性以及工艺条件和环境的不确定性,成型工艺的产品会受到质量波动的影响。应对这些不确定性的一种方法是实施闭环控制,其中要考虑到传感器测得的实际产品特性或数学过程模型所估算的实际产品特性。两种不确定性控制方法都需要付出经济上的努力。在传感器集成的情况下,工作量就是传感器的成本,包括信号处理以及集成的设计和制造工作量。在估算模型的情况下,工作量主要取决于推导模型,识别参数并将模型实现到PLC中所需的时间和知识。模型与现实之间不匹配的风险以及参数识别错误的风险可以假定为额外的不确定性(模型不确定性)。本文通过考虑过程边界条件(例如半成品零件性能的波动程度)来评估受控不确定性和其他不确定性。通过对示例性过程的分析证明了所提出的评估。

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