Transmission Tower Deviation Correction Monitoring System
This paper proposes a Beidou-based transmission tower deviation correction monitoring system. The system employs a wireless strain sensor to monitor the strain of the tower''s key position.
The situation of the solar panel orientation (nominal mode, pitch-maneuver process, and pitch-fixed mode) of BeiDou-3 M215 is first presented. An overview of the ECOM-type and box-wing SRP models is subsequently given, and the data collection and processing strategies adopted in the study are introduced.
From the collected telemetry information, the solar panel B (SP-B) of BeiDou-3 M215 satellite underwent pitch-maneuvers around the body-fixed Y-axis on days of year 65–67 of 2024, and was then kept perpendicular to the body-fixed X-axis (pitch-fixed mode).
This paper proposes a Beidou-based transmission tower deviation correction monitoring system. The system employs a wireless strain sensor to monitor the strain of the tower's key position. Furthermore, high-precision monitoring of the tower's spatial position is achieved using Beidou differential positioning.
The SP-B panel of BeiDou-3 M215 underwent notable pitch-maneuvers during DOYs 65–67 of 2024, and then remained perpendicular to the X-axis instead of the satellite-Sun vector. For SP-B panel in pitch-maneuver operation, SRP perturbations aroused by SP-B show notable variations in the D and B directions.
This paper proposes a Beidou-based transmission tower deviation correction monitoring system. The system employs a wireless strain sensor to monitor the strain of the tower''s key position.
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From the collected telemetry information, the solar panel B (SP-B) of BeiDou-3 M215 satellite underwent pitch-maneuvers around the body-fixed Y-axis on days of year 65–67 of 2024,
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