In this paper, the non-fragile robust attitude control problem is investigated for flexible microsatellite close-proximity inspection, with external disturbances, parameter uncertainties and input constraints. Firstly, the attitude motion model of microsatellite with flexible appendages is established. Secondly, a non-fragile robust dynamic output feedback controller (RDOFC) with multiplicative gain variations (MGV) is designed to satisfy the multi-objective requirements, including pole assignment, H ∞ disturbances attenuation and input constraints. Based on the Lyapunov stability theory, the design of the non-fragile robust H ∞ attitude control is formulated as the linear matrix inequality (LMI) condition. Finally, numerical simulations are performed to demonstrate the effectiveness of the proposed controller.INDEX TERMS Attitude control, non-fragile H ∞ , flexible microsatellite, multi-objective , dynamic output feedback.