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CMM MEASUREMENT UNCERTAINTY REDUCTION VIA SAMPLING STRATEGY OPTIMIZATION

机译:CMM测量通过采样策略优化测量不确定性降低

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Uncertainty is a key concept in any environment which involves measurements to ensure process quality: a trade-off has to be found between measurement costs, which increase as uncertainty lowers, and costs related to measurement errors. In mechanics, geometrical conformance is a common requirement. Two similar standards series deal with the problem of uncertainty in geometrical error estimate: ASME B89.7.3 and ISO 14253. Geometrical inspection is often performed by means of a "Coordinate Measuring Machine " (CMM). For a CMM, a trade off between measurement and errors costs may be found by optimizing the sampling strategy. In this work a cost function will be proposed as support for finding a trade-off between measurement uncertainty and costs. This function may be optimized by means of an heuristic algorithm. The method will involve repeated measurements of calibrated parts to evaluate uncertainty (like in ISO/TS 15330-3). A case study will be proposed.
机译:不确定性是任何环境中的关键概念,涉及测量以确保过程质量:必须在测量成本之间找到权衡,这随着不确定性降低,以及与测量误差有关的成本。在力学中,几何一致性是一种常见的要求。两个类似的标准系列处理几何误差估计中的不确定性问题:ASME B89.7.3和ISO 14253.几何检查通常通过“坐标测量机”(CMM)进行。对于CMM,可以通过优化采样策略来找到测量和错误成本之间的折衷。在这项工作中,将提出成本职能作为在测量不确定性和成本之间找到权衡的支持。可以通过启发式算法优化该功能。该方法将涉及重复测量校准部分以评估不确定性(如在ISO / TS 15330-3中)。将提出案例研究。

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