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首页> 外文期刊>ISPRS International Journal of Geo-Information >Investigating the Utility Potential of Low-Cost Unmanned Aerial Vehicles in the Temporal Monitoring of a Landfill
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Investigating the Utility Potential of Low-Cost Unmanned Aerial Vehicles in the Temporal Monitoring of a Landfill

机译:调查低成本低成本无人机在垃圾填埋场时间监测中的效用潜力

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The collection of solid waste is a challenging issue, especially in highly urbanized areas. In developing countries, landfilling is currently the preferred method for disposing of solid waste, but each landfill has a limited lifecycle. Therefore, changes in the amount of stored waste should be monitored for the sustainable management of such areas. In this study, volumetric changes in a landfill were examined using a low-cost unmanned aerial vehicle (UAV). Aerial photographs obtained from five different flights, covering approximately two years, were used in the volume calculations. Values representing the amount of remaining space between the solid waste and a reference plane were determined using digital elevation models, which were produced based on the structure from motion (SfM) approach. The obtained results and potential of UAVs in the photogrammetric survey of a landfill were further evaluated and interpreted by considering other possible techniques, ongoing progress, and the information existing in an environmental impact assessment report. As a result of the study, it was proved that SfM carried out using a low-cost UAV has a high potential for use in the reconstruction of a landfill. Outcomes were obtained over a short period, without the need for direct contact with the solid waste, making the UAV preferable for use in planning and decision-making studies.
机译:固体废物的收集是一个具有挑战性的问题,尤其是在高度城市化的地区。在发展中国家,垃圾填埋是目前处理固体废物的首选方法,但是每个垃圾填埋场的生命周期都很有限。因此,应监控所存储废物量的变化,以便对这些区域进行可持续管理。在这项研究中,使用低成本的无人机(UAV)检查了垃圾填埋场的体积变化。体积计算中使用了从五个不同的飞行中获得的航拍照片,覆盖了大约两年的时间。使用数字高程模型确定表示固体废物和参考平面之间剩余空间量的值,该模型是基于运动(SfM)方法的结构生成的。通过考虑其他可能的技术,正在进行的进展以及环境影响评估报告中提供的信息,进一步评估和解释了无人机在填埋场摄影测量中获得的结果和潜力。研究的结果证明,使用低成本无人机进行的SfM具有很高的潜力可用于垃圾掩埋场的重建。结果是在短时间内获得的,不需要直接与固体废物接触,这使得无人机更适合用于计划和决策研究。

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