TY - GEN
T1 - Formation Control of the Tethers of an Electrostatic Solar Sail
AU - Yavari, Setayesh
AU - Sahebsara, Farid
AU - De Queiroz, Marcio
AU - Snellgrove, Matthew
N1 - Publisher Copyright:
© 2024 IEEE.
PY - 2024/8/21
Y1 - 2024/8/21
N2 - Electrostatic solar sail (E-sail) is a propellant-less spacecraft propulsion concept that uses the dynamic pressure of the solar wind as a source of continuous thrust. E-sail consists of numerous long conducting tethers that are kept positively biased by an electron gun and centrifugally stretched by the spacecraft spin. The tethers form a circular electric field that deflects solar wind protons and extracts their momentum, acting like a "virtual"sail. The relative positioning of the tethers is essential for optimizing the effective propulsive force applied to the spacecraft. It has been proposed that the tip of each tether host a small remote unit with actuators to control its motion. This paper proposes to tackle the E-sail tether positioning problem using the concept of formation control of multi-agent systems. Specifically, we design a nonlinear controller that ensures that the E-sail tethers behave like an axially-symmetric, planar rigid body while stabilizing the attitude of the remote units. Simulations demonstrate the proposed control in action.
AB - Electrostatic solar sail (E-sail) is a propellant-less spacecraft propulsion concept that uses the dynamic pressure of the solar wind as a source of continuous thrust. E-sail consists of numerous long conducting tethers that are kept positively biased by an electron gun and centrifugally stretched by the spacecraft spin. The tethers form a circular electric field that deflects solar wind protons and extracts their momentum, acting like a "virtual"sail. The relative positioning of the tethers is essential for optimizing the effective propulsive force applied to the spacecraft. It has been proposed that the tip of each tether host a small remote unit with actuators to control its motion. This paper proposes to tackle the E-sail tether positioning problem using the concept of formation control of multi-agent systems. Specifically, we design a nonlinear controller that ensures that the E-sail tethers behave like an axially-symmetric, planar rigid body while stabilizing the attitude of the remote units. Simulations demonstrate the proposed control in action.
UR - https://www.scopus.com/pages/publications/85204783655
UR - https://www.mendeley.com/catalogue/e20f6224-ac40-38b3-ba8a-246d8a16fc64/
U2 - 10.1109/CCTA60707.2024.10666560
DO - 10.1109/CCTA60707.2024.10666560
M3 - Conference contribution
AN - SCOPUS:85204783655
SN - 9798350370942
T3 - 2024 IEEE Conference on Control Technology and Applications, CCTA 2024
SP - 184
EP - 189
BT - 2024 IEEE Conference on Control Technology and Applications, CCTA 2024
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 2024 IEEE Conference on Control Technology and Applications, CCTA 2024
Y2 - 21 August 2024 through 23 August 2024
ER -