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Dual Response Surface Methodology for the Robust Design of Continuous Compaction Measurement Value

机译:用于连续压实测量值的稳健设计的双响应面方法

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Robust design of continuous compaction measurement value aims at selecting the best combination of control factors in order to reduce the sensitivity to noise factors, so that the accuracy of the continuous compaction control can be improved. Based on the dual response surface methodology, mean and variance of the compaction meter value (CMV) are used as the optimization objective to develop a second-order polynomial model. Using the Box-Behnken design, continuous compaction control tests are carried out for three factors and three elevation levels at Zhijiang construction site of Shang Hai-Kun Ming High-Speed Railway. The three factors are vibration amplitude, excitation frequency and roller speed. The results show that the degree of stability on the CMV is given by: excitation frequency > amplitude > roller speed. Due to the "smaller-the-better" characteristic of the CMV, the best combination of technical parameters for the vibratory roller is: excitation frequency=28.0 Hz, roller speed=4.0 km/h, and vibration amplitudes=1.10 mm. Finally, the field test verifies the applicability and the accuracy of this combination of technical parameters.
机译:连续压实测量值的稳健设计旨在选择控制因素的最佳组合,以降低对噪声因素的敏感性,从而可以提高连续压实控制的精度。基于双重响应面方法,以压实度计值(CMV)的均值和方差作为优化目标,以开发二阶多项式模型。使用Box-Behnken设计,在上海昆明高速铁路枝江施工现场对三个因素和三个高程进行了连续压实控制试验。这三个因素是振动幅度,激励频率和辊速度。结果表明,CMV的稳定性程度由以下公式给出:激励频率>振幅>辊速。由于CMV的“更好”特性,振动辊的技术参数的最佳组合是:激励频率= 28.0 Hz,辊速度= 4.0 km / h和振动幅度= 1.10 mm。最后,现场测试验证了该技术参数组合的适用性和准确性。

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