[1] Jian LIU, Gang WANG, Yiming HU et al. GW150914 and gravitational-wave astronomy. Chinese Science Bulletin, 61, 1502-1524(2016).
[2] Wenrui HU, Yueliang WU. The Taiji Program in space for gravitational wave physics and the nature of gravity. National Science Review, 4, 685-686(2017).
[3] Weidou NI. Space gravitational wave detection: progress and outlook. Science Sinica Physica, Mechanica and Astronomica, 54, 270402(2024).
[4] Dezhi WANG, Xuefeng ZHANG, Huizong DUAN. On point-ahead angle control strategies for TianQin. Classical and Quantum Gravity, 41, 117003(2024).
[5] Junjie ZHOU, Aiping PANG, Hongbo ZHOU et al. Fractional PID control for gravitational wave detection satellites considering output characteristics of micro-propellers. Journal of Deep Space Exploration, 10, 292-302(2023).
[6] Hongyin LI, Xiaorong YE, Jiaheng LIU et al. Key issues in the research on drag-free control for TianQin. Acta Scientiarum Naturalium Universitatis Sunyatseni, 60, 213-224(2021).
[7] Xingyu GOU, Lijiao WANG, Mingqun LI et al. Acceleration mode drag-free control of TQ-1 satellite. Journal of Astronautics, 42, 603-610(2021).
[9] Liwei HAO, Jinxiu ZHANG, Jihe WANG et al. Translational tracking strategy of drag-free system for gravitational wave detection in geocentric orbit. Journal of National University of Defense Technology, 46, 36-48(2024).
[10] Xiaobin LIAN, Jinxiu ZHANG, Lang LU et al. Frequency separation control for drag-free satellite with frequency-domain constraints. IEEE Transactions on Aerospace and Electronic Systems, 57, 4085-4096(2021).
[11] Yuzhou FANG, Xuefeng ZHANG, Fangyuan FU et al. Payload architecture and pointing control strategies for TianQin. Physical Review D, 109, 062001(2024).
[12] Zhenhua ZHANG, Lei YANG, Shiwei PANG. Jitter environment analysis for micro-precision spacecraft. Spacecraft Environment Engineering, 26, 528-534,498(2009).
[14] Lin LI, Yang YU, Li WANG et al. Modeling and analysis of the influence caused by micro-vibration on satellite attitude control system. Acta Astronautica, 213, 71-80(2023).
[16] C FRÖHLICH, J ROMERO, H ROTH et al. VIRGO: experiment for helioseismology and solar irradiance monitoring. Solar Physics, 162, 101-128(1995).
[17] Hongwei LIU, Zhankui WANG, Yulin ZHANG. Coupled modeling and analysis of radiometer effect and residual gas damping on proof mass in purely gravitational orbit. Science China Technological Sciences, 54, 894-902(2011).
[18] S SHIOMI, Weitou NI. Acceleration disturbances and requirements for ASTROD I. Classical and Quantum Gravity, 23, 4415(2006).
[19] B L SCHUMAKER. Disturbance reduction requirements for LISA. Classical and Quantum Gravity, 20, S239(2003).
[20] T J SUMNER, G MUELLER, J W CONKLIN et al. Charge induced acceleration noise in the LISA gravitational reference sensor. Classical and Quantum Gravity, 37, 045010(2020).
[21] M ARMANO, H AUDLEY, G AUGER et al. Charge-induced force noise on free-falling test masses: results from LISA pathfinder. Physical Review Letters, 118, 171101(2017).
[23] Qiyang HU, Jun CHEN, Jun LONG et al. The dynamic model of thruster for drag-free satellite. Aerospace Control and Application, 42, 52-56(2016).
[24] M D SHUSTER, S D OH. Three-axis attitude determination from vector observations. Journal of Guidance and Control, 4, 70-77(1981).
[25] Zhuqing ZHOU, Xingxiu LI, Panlong WU. Attitude determination method of satellite based on star and gyroscope. Journal of Ordnance Equipment Engineering, 42, 187-191(2021).
[26] Huanhuan ZHANG, Xinyi LIU, Ying LIU et al. Thermal-mechanical-electromagnetic multiphysics simulation of satellite phased array antenna based on DGTD and FEM method. IEEE Journal on Multiscale and Multiphysics Computational Techniques, 9, 236-246(2024).
[27] Dong WANG, Xuefeng ZHANG, Lihua ZHANG et al. Long-term thermal stability of TianQin satellites. Physical Review D, 109, 102007(2024).
[28] S P AMARO, H AUDLEY, S BABAK et al. Laser interferometer space antenna(2017).