Rapid Initial Detumbling Strategy for Micro/Nanosatellites Using a Pitch Bias Momentum System
スポンサーリンク
概要
- 論文の詳細を見る
When a satellite separates from the launch vehicle, an initial high angular rate or a tip-off rate is generated. B-dot logic is generally used for controlling the initial tip-off rate. However, it has the disadvantage of taking a relatively long time to control the initial tip-off rate. To solve this problem, this paper suggests a new detumbling control method that can be adapted to micro/nanosatellites using a pitch bias momentum system, and presents simulation results. The proposed detumbling method was able to control the angular rate within 20 min, which is a significant reduction compared to conventional methods. In addition, the momentum wheel initial start-up must be done under stable conditions, and a conventional pitch spin-stabilized initial wheel start-up method is commonly used. Since the conventional wheel start-up method cannot be used if the detumbling controller proposed by this paper is used, a method is also proposed for bringing up the momentum wheel speed to nominal rpm while maintaining stability. The performance of the method is compared and verified through simulation. The overall results show a much faster control time compared to the conventional methods, and achievement of nominal wheel speed and 3-axis stabilization while maintaining stability.
- 社団法人 日本航空宇宙学会の論文
- 2007-05-04
著者
-
Chang Young-keun
School Of Aerospace Engineering Han-kuk Aviation University
-
Lee Byung-hoon
School Of Aerospace And Mechanical Engineering Hankuk Aviation University
-
Lee Byung-hoon
School Of Aerospace And Mechanical Engineering Korea Aerospace University
-
CHOI Jung-Won
School of Aerospace and Mechanical Engineering, Korea Aerospace University
-
YUN Mi-Yeon
School of Aerospace and Mechanical Engineering, Korea Aerospace University
-
KANG Seok-Jin
School of Aerospace and Mechanical Engineering, Korea Aerospace University
-
Choi Jung-won
School Of Aerospace And Mechanical Engineering Korea Aerospace University
-
Kang Seok-jin
School Of Aerospace And Mechanical Engineering Korea Aerospace University
-
Yun Mi-yeon
School Of Aerospace And Mechanical Engineering Korea Aerospace University
-
Chang Young-keun
School Of Aerospace And Mechanical Engineering Hankuk Aviation University
-
Chang Young-keun
School Of Aerospace And Mechanical Engineering Korea Aerospace University
関連論文
- Development of Mobile Broadband Satellite Access System for Ka/Ku-band Satellite Communications(Recent Fundamental Technologies for Broadband Satellite Communications)
- Mobile Broadband Satellite Access System for Ka/Ku band Satellite Communications
- Mobile Broadband Satellite Access System for Ka/Ku band Satellite Communications(System Engineering-I)
- The Development and Design of New Generation HAUSAT-1 (CubeSat) Pico Satellite (2002 Joint Conference on Satellite Communications(JC-SAT2002)--衛星通信技術及び一般)
- Rapid Initial Detumbling Strategy for Micro/Nanosatellites Using a Pitch Bias Momentum System
- Crystal Bases for Quantum Classical Algebras and Nakajima's Monomials
- Low-Cost Responsive Space Exploitation by HAUSAT Small Satellite(Advanced technology-III)