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Designing and Implementation of Overhead Conductor Altitude Measurement System Using GPS for Sag Monitoring

机译:使用GPS进行SAG监控的架空导体高度测量系统的设计与实现

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Background: For efficient operation and reliability of power systems, continuous monitoring of power line sag is needed. The dynamic thermal line rating of a power transmission system at any instant may also be evaluated if power line sag information is available at that time. The smart grid also encourages sag measurement technologies so that the operator can take immediate corrective action whenever power line ground clearance exceeds the maximum allowable limit. Aim: The purpose of this paper is to design and implement an overhead conductor altitude measurement system using Global Positioning System technology with accuracy enhancement techniques for sag monitoring in power transmission lines in real time. Method: The observed Global Positioning System (GPS) measurements are found inaccurate by the comparison of observed GPS measurements with physical measurements taken at the field site. Therefore, various combinations of accuracy enhancement techniques such as Bad Data Identification/Modification (BDIM), Least Square Parameter Estimation (LSPE), and Haar Wavelet Transform (HWT) are used. Results: The field test has been conducted successfully on 11 kV power line by using the designed system to measure the altitude of overhead conductor at mid-span as well as at the pole to evaluate conductor sag of power lines in real time. Conclusions: It is found that HWT after LSPE and BDIM combination of accuracy enhancement techniques improves the accuracy of GPS measurements significantly and hence conductor sag can be monitored on-screen directly.
机译:背景:为了高效运行和电力系统的可靠性,需要连续监控电源线凹陷。如果当时可用电力线SAG信息,也可以评估任何瞬间在任何瞬间的动态热线额定值。智能电网还鼓励SAG测量技术,使操作员可以在电源线接地间隙超过最大允许极限时立即采取纠正措施。目的:本文的目的是使用全球定位系统技术设计和实施架空导体高度测量系统,具有精确的增强技术,实时在电力传输线路中进行下垂监控。方法:观察到的全球定位系统(GPS)测量以观察到的GPS测量与现场站点拍摄的物理测量相比不准确。因此,使用精度增强技术的各种组合,例如错误的数据识别/修改(BDIM),最小二乘参数估计(LSPE)和HAAR小波变换(HWT)。结果:现场测试通过使用设计的系统在11 kV电源线上成功进行,以测量中间跨度以及杆处的架空导体的高度,以便实时评估电力线的导体凹陷。结论:发现LSPE和BDIM精度增强技术后的HWT提高了GPS测量的准确性,因此可以直接监测导体凹陷。

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