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Pavement ultrathin layer flatness control system based on absolute elevation and pavement ultrathin layer flatness control method
The invention discloses a pavement ultrathin layer flatness control system based on absolute elevation and a pavement ultrathin layer flatness control method. The system comprises intelligent pavementflatness detection equipment, a pavement elevation cloud chart generation system, a pavement ultrathin layer section division system and an ultrathin layer construction flatness control system. The method comprises the steps that the intelligent pavement flatness detection equipment acquires absolute elevation data of a lower bearing layer of a pavement ultrathin layer; the pavement elevation cloud chart generation system further realizes visualization of the elevation data of the lower bearing layer of the ultrathin layer through programming modeling and generates an elevation cloud chart ofthe lower bearing layer of the ultrathin layer, the cloud chart data is imported into the road surface ultrathin layer section division system to divide the lower bearing layer of the pavement ultrathin layer, and the division condition of the lower bearing layer of the pavement ultrathin layer is imported into the ultrathin layer construction flatness control system to realize intelligent control of the paving thickness of the ultrathin layer. According to the invention, the flatness of the lower bearing layer of the ultrathin layer can be accurately measured, the real-time control of the paving thickness is realized, the flatness of the pavement ultrathin layer is improved, and the application prospect is wide.
本发明公开了一种基于绝对高程的路面超薄层平整度控制系统及控制方法,系统包括智能路面平整度检测设备、路面高程云图生成系统、路面超薄层段落划分系统及超薄层施工平整度控制系统,该方法通过智能路面平整度检测设备获取路面超薄层下承层绝对高程数据,路面高程云图生成系统通过编程建模进一步实现超薄层下承层高程数据的可视化,生成超薄层下承层高程云图,通过将云图数据导入路面超薄层段落划分系统对路面超薄层下承层进行划分,将路面超薄层下承层划分情况导入超薄层施工平整度控制系统,实现对超薄层摊铺厚度的智能控制。本发明可以精确测量超薄层下承层平整度,实现摊铺厚度的实时控制,提高路面超薄层平整度,具有广阔的应用前景。
Pavement ultrathin layer flatness control system based on absolute elevation and pavement ultrathin layer flatness control method
The invention discloses a pavement ultrathin layer flatness control system based on absolute elevation and a pavement ultrathin layer flatness control method. The system comprises intelligent pavementflatness detection equipment, a pavement elevation cloud chart generation system, a pavement ultrathin layer section division system and an ultrathin layer construction flatness control system. The method comprises the steps that the intelligent pavement flatness detection equipment acquires absolute elevation data of a lower bearing layer of a pavement ultrathin layer; the pavement elevation cloud chart generation system further realizes visualization of the elevation data of the lower bearing layer of the ultrathin layer through programming modeling and generates an elevation cloud chart ofthe lower bearing layer of the ultrathin layer, the cloud chart data is imported into the road surface ultrathin layer section division system to divide the lower bearing layer of the pavement ultrathin layer, and the division condition of the lower bearing layer of the pavement ultrathin layer is imported into the ultrathin layer construction flatness control system to realize intelligent control of the paving thickness of the ultrathin layer. According to the invention, the flatness of the lower bearing layer of the ultrathin layer can be accurately measured, the real-time control of the paving thickness is realized, the flatness of the pavement ultrathin layer is improved, and the application prospect is wide.
本发明公开了一种基于绝对高程的路面超薄层平整度控制系统及控制方法,系统包括智能路面平整度检测设备、路面高程云图生成系统、路面超薄层段落划分系统及超薄层施工平整度控制系统,该方法通过智能路面平整度检测设备获取路面超薄层下承层绝对高程数据,路面高程云图生成系统通过编程建模进一步实现超薄层下承层高程数据的可视化,生成超薄层下承层高程云图,通过将云图数据导入路面超薄层段落划分系统对路面超薄层下承层进行划分,将路面超薄层下承层划分情况导入超薄层施工平整度控制系统,实现对超薄层摊铺厚度的智能控制。本发明可以精确测量超薄层下承层平整度,实现摊铺厚度的实时控制,提高路面超薄层平整度,具有广阔的应用前景。
Pavement ultrathin layer flatness control system based on absolute elevation and pavement ultrathin layer flatness control method
一种基于绝对高程的路面超薄层平整度控制系统及控制方法
HUANG XIAOMING (author) / ZHONG KUNZHI (author) / MA TAO (author) / HU JIANYING (author)
2020-04-17
Patent
Electronic Resource
Chinese
IPC:
E01C
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