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Research of Continuous Compaction Detection Method Based on Embedded System

机译:基于嵌入式系统的连续压实检测方法研究

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Continuous compaction detection method was investigated. For the monitoring, an embedded-based detector was designed. For the trajectory, a collaborative positioning method was proposed. For the effects, harmonic analysis was introduced. Positioning experiments were conducted and the accuracy was improved to 0.48 m. Rolling tests were performed with three passes, and for the whole area, the average compaction meter values (CMVs) were 98.22, 139.21, and 215.45. The average compaction control values (CCVs) were 103.05, 155.45, and 196.68. Thus the trends of CMV and CCV changing were consistent with rolling. Combining with monitoring video, CMV was more sensitive to irregular operations. For the specific section, the average multiples of CMVs were 1.42, 1.56, and CCVs were 1.51, 1.33. Thus, CMV was more consistent with lower dispersion, and was selected as compaction degree parameter. The results showed that continuous compaction detector meet the monitoring requirements at low-cost, and could lay foundation for intelligent compaction.
机译:研究了连续压实检测方法。对于监控,设计了一种基于嵌入式的探测器。对于轨迹,提出了一种协同定位方法。对于效果,介绍了谐波分析。进行定位实验,精度得到改善至0.48米。用三次通过进行滚动试验,并且对于整个区域,平均压实表值(CMV)为98.22,139.21和215.45。平均压实控制值(CCV)为103.05,155.45和196.68。因此,CMV和CCV变化的趋势与滚动一致。结合监控视频,CMV对不规则操作更敏感。对于具体部分,CMV的平均倍数为1.42,1.56,CCV为1.51,1.33。因此,CMV与较低的分散体更一致,并选择为压实度参数。结果表明,连续压实探测器以低成本满足监测要求,并且可以为智能压实奠定基础。

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