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Real time windage yaw online detection system of power transmission line

A transmission line and detection system technology, applied in the direction of circuit devices, information technology support systems, measurement devices, etc., can solve problems such as low efficiency, unreliability, and manual detection schemes that are not full-time and full-time detection

Inactive Publication Date: 2016-05-04
任荣源
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  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0005] However, the transmission line wind deflection detection scheme adopted in the prior art requires the power supply management department to arrange personnel to go to the site to carry out visual inspection, and rely on personal experience to judge whether the early warning value is reached. low and unreliable

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  • Real time windage yaw online detection system of power transmission line

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Embodiment Construction

[0017] The implementation of the real-time wind deflection online detection system for transmission lines of the present invention will be described in detail below with reference to the accompanying drawings.

[0018]At present, the detection of wind deflection of transmission lines by the power supply management department is still in the manual detection method, that is, arranging special personnel to go to the site for naked eye observation. Because this detection method relies too much on the experience of on-site personnel, the efficiency is low and the accuracy is not high. At the same time, the data transmission of this detection method is not real-time, and it is impossible to achieve full-time detection.

[0019] In order to overcome the above deficiencies, the present invention builds a real-time wind deflection online detection system for transmission lines, which uses multiple environmental parameter detection devices to comprehensively judge the specific real-time...

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Abstract

The invention relates to a real time windage yaw online detection system of a power transmission line, comprising an SDRAM memory, a windage yaw angle determining device and a robot main body structure; the SDRAM memory is used for storing a preset parameter related to a real time windage yaw angle of the power transmission line; the windage yaw angle determining device is used for calculating the real time windage yaw angle of the power transmission line; the robot main body structure is erected on the power transmission line and is used for patrolling the power transmission line; the SDRAM memory and the windage yaw angle determining device are located on the robot main body structure; the robot main body structure determines whether to warn based on the numerical value of the real time windage yaw angle. Through the system of the invention, accurate online detection is carried out to the real time windage yaw angle of the power transmission line; and the data monitoring real time performance is improved.

Description

[0001] The present invention is a divisional application of a patent with the application number 2015109562511, the application date is December 17, 2015, and the invention name is "Transmission Line Real-time Wind Deviation Online Detection System". technical field [0002] The invention relates to the field of power transmission line monitoring, in particular to a real-time wind deflection online detection system for power transmission lines. Background technique [0003] At present, the transmission lines are generally suspended in the air with iron tower structures. Due to the flexibility of the transmission lines themselves, they are easy to shake in windy weather. Departments and residents are inconvenient, and disconnected wires may cause electric shocks to people and animals. [0004] Therefore, the wind deviation detection of the transmission line is very important, and it can provide the power supply management department with real-time data of the transmission lin...

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H02J13/00G01R31/08G01B21/22
CPCH02J13/0075H02J13/00G01B21/22G01R31/085Y04S40/126Y02E60/00
Inventor 任荣源
Owner 任荣源