A Thermal-Based Technology for Roller Path Tracking and Mapping in Pavement Compaction Operations

Linjun Lu, F. Dai
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Abstract

Compaction is one of the most important phases in construction of asphalt concrete (AC) pavements, as it directly affects the density and thereby the performance of pavements. This paper proposed a thermal-based compaction technology for real-time roller path tracking and mapping in pavement compaction operations, based on which roller operators can better control their compaction quality. In the proposed method, the incremental change of a roller position in a short interval was decomposed into two motion components (i.e., the change in heading direction and the linear translation). The global position of the roller was then recovered by chaining the frame-by-frame motion in terms of their changes. Two sets of experimental data from different pavement construction sites were used to test the performance of the proposed technology. The results showed that the developed technology is a promising alternative to the current GPS-based intelligent compaction (IC) in pavement compaction operations.
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路面压实作业中滚轮路径跟踪与映射的热基技术
压实是沥青混凝土路面施工中最重要的阶段之一,因为它直接影响到路面的密度,从而影响到路面的性能。本文提出了一种基于热压实技术的路面压实作业实时压实路径跟踪与测绘技术,使压实作业人员能够更好地控制压实质量。该方法将滚子位置在短时间内的增量变化分解为两个运动分量(即前进方向的变化和直线平移)。然后通过将其变化的逐帧运动链接起来,恢复滚子的全局位置。采用来自不同路面施工现场的两组实验数据来测试所提出技术的性能。结果表明,所开发的技术是目前基于gps的智能压实(IC)在路面压实作业中的一个有希望的替代方案。
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