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Automatic Material and Boundary Layer Detection During the Process of Mining on a Bucket Wheel Excavator

机译:斗轮挖掘机采矿过程中的自动材料和边界层检测

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Economically effi cient mining processes can be signifi cantly assisted by the implementation of sensor technologies for the detection of materials and boundary layers between materials inside the stratum. These sensors are meant to facilitate the machinery operator and illustrate furthermore the prerequisites in assisting tools towards fully automated mining equipment. Therefore, project ‘Sensory Identifi cation of Material Type and Detection of the Interfaces’ (SIMT) aims at the integration of ground penetrating radar (GPR) and geoelectric sensor technology by endowing with them a bucket of a bucket wheel excavator. For this reason, a sensor bucket was developed and tested in the Inden Mine of RWE Power AG. The feasibility of integration and deployment of such sensor technology has been proven effective for the conditions of open cast mining. The main focus of current research lies on developing algorithms to analyse the acquired measurement data from the sensors to automatically detect layers and materials. A computer network receives the GPR and geoelectric measurement data as well as the positioning data of the sensor bucket. The positioning data mainly consists of GPS and encoder information, which is merged with the sensor data by using the UTC time stamp. With the aid of consecutive processes the relevant information will be extracted and provided to the user. The aim of SIMT is to replace material identifi cation, traditionally carried out by the operator, by implementing a continuous operating interpretation system in mining equipment based on GPR and geoelectric sensor technology, resulting in more detailed information regarding the working face during an excavation. This detailed information provides an opportunity for effi cient planning and controlling of selective mining of natural deposits, such as the process of lignite mining.
机译:通过实施传感器技术,可以通过实施传感器技术来巩固经济效率的挖掘工艺,以检测层内材料之间的材料和边界层。这些传感器旨在促进机械操作员,并说明辅助工具朝向全自动采矿设备的先决条件。因此,项目(SIMT)的目的是通过与他们赋予斗轮式挖掘机的斗整合地面穿透雷达(GPR)和地电传感技术的“材料类型和检测接口的感官Identifi阳离子”。因此,在RWE Power AG的Inden Lim中开发并测试了传感器桶。已经证明了这种传感器技术的整合和部署的可行性对于开放铸造挖掘的条件有效。目前研究的主要重点在于开发算法,以分析来自传感器的获取的测量数据,以自动检测层和材料。计算机网络接收GPR和电气测量数据以及传感器桶的定位数据。定位数据主要由GPS和编码器信息组成,它通过使用UTC时间戳与传感器数据合并。借助连续处理,将提取相关信息并向用户提供。 SIMT的目的是通过在基于GPR和地电传感器技术的采矿设备中实施连续的操作解释系统,取代传统上由操作员执行的材料识别阳离子,从而导致在挖掘过程中有关工作面的更详细信息。该详细信息提供了有效规划和控制自然沉积物选择性开采的机会,例如褐煤采矿过程。

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