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Robust and structure exploiting optimization algorithms: An integral quadratic constraint approach

, , and . International Journal of Control, 94 (11): 2956-2979 (2021)
DOI: 10.1080/00207179.2020.1745286

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Robust and structure exploiting optimisation algorithms: An integral quadratic constraint approach, , and . International Journal of Control, 94 (11): 2956-2979 (2021)Time-varying Zames–Falb multipliers for LTI Systems are superfluous, and . Automatica, (January 2023)Robust and structure exploiting optimization algorithms : An integral quadratic constraint approach, , and . Preprint, (2019)Enhancing the Guidance, Navigation and Control of Autonomous Parafoils using Machine Learning Methods, , , , , , , , , and . ESA GNC and ICATT Conference, Noordwijk, European Space Agency, (2023)A Unified Non-Strict Finsler Lemma, , , , , and . IEEE control systems letters, (2024)Learning Functions and Uncertainty Sets Using Geometrically Constrained Kernel Regression, , and . 2022 IEEE 61st Conference on Decision and Control (CDC), page 2141-2146. IEEE, (2022)Robust Exponential Stability and Invariance Guarantees with General Dynamic O'Shea-Zames-Falb Multipliers. 22nd IFAC World Congress, 56, 2, page 5799-5804. Elsevier, (2023)The Non-Strict Projection Lemma, , , , and . IEEE transactions on automatic control, 69 (8): 5584-5590 (2024)Trajectory Generation for the Unicycle Model Using Semidefinite Relaxations, , , and . European journal of control, 80 (Part A): 101063 (2024)Time-varying Zames-Falb multipliers for LTI Systems are superfluous, and . Automatica, 147 (January): 110577 (2023)