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Development of wire length measuring equipment for prefabricated erection of transmission lines

机译:用于输电线路预制架设的线长测量设备的开发

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The existing prefabricated wireline construction technology is difficult to accurately measure the real-time length of the deployed wires, resulting in too large construction errors and cannot be popularized and applied. To this end, a length measuring device that can accurately measure the length of the wire during the construction of the prefabricated wire is developed. In terms of the hardware of the length measuring equipment, based on the construction characteristics of the prefabricated wiring and the characteristics of the wire, the photoelectric encoder and the STC8G series single-chip microcomputer are used to complete the collection and processing of the wire length data, and the mature and stable LoRa technology is used to complete the wireless transmission of the data. In terms of software program of length measurement equipment, the measurement of wire length data, transmission, and interaction of control command signals are realized by optimizing length measurement scheme, interface development of terminal equipment, and information interaction program design. Finally, according to the actual working conditions of the prefabricated wiring construction, the mechanical structure of the length measuring equipment is designed, and the assembly is completed. The developed length measuring equipment has been successfully applied to practical projects. According to the wire length measuring equipment, the deviation between the observation sag and the design sag after the wire length is measured by the wire length measuring equipment is 2.0, which meets the design requirement of +/- 2.5.
机译:现有的装配式索线施工技术难以准确测量展开的索线的实时长度,导致施工误差过大,无法得到推广应用。为此,开发了一种长度测量装置,该装置在预制线材施工过程中可以准确测量线材的长度。在长度测量设备的硬件方面, 根据预制布线的构造特点和导线的特性, 采用光电编码器和STC8G系列单片机完成导线长度数据的采集和处理, 采用成熟稳定的LoRa技术完成数据的无线传输.在长度测量设备软件程序方面,通过优化长度测量方案、终端设备接口开发、信息交互程序设计等方式,实现了导线长度数据的测量、传输、控制命令信号的交互等功能。最后,根据预制布线施工的实际工况,设计长度测量设备的机械结构,并完成组装。开发的长度测量设备已成功应用于实际项目。根据线长测量设备,线长测量设备测量线长后,观测垂度与设计垂度的偏差为2.0%,满足+/- 2.5%的设计要求。

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