Academic literature on the topic '$(\infty'

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Journal articles on the topic "$(\infty"

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Ginot, Grégory, and Gilles Halbout. "Lifts of $C_\infty $- and $L_\infty $-morphisms to $G_\infty $-morphisms." Proceedings of the American Mathematical Society 134, no. 3 (2005): 621–30. http://dx.doi.org/10.1090/s0002-9939-05-08126-8.

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Haugseng, Rune, and Joachim Kock. "$\infty$-operads as symmetric monoidal $\infty$-categories." Publicacions Matemàtiques 68 (January 1, 2024): 111–37. http://dx.doi.org/10.5565/publmat6812406.

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Hmidi, Taoufik, and Dong Li. "Small $\dot{B}^{-1}_{\infty , \infty}$ implies regularity." Dynamics of Partial Differential Equations 14, no. 1 (2017): 1–4. http://dx.doi.org/10.4310/dpde.2017.v14.n1.a1.

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Korkmaz, Recep. "On the closure of $$B_{( - \infty ,\infty )}^2 $$." Semigroup Forum 54, no. 1 (1997): 166–74. http://dx.doi.org/10.1007/bf02676599.

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Кузьмин, Леонид Викторович, та Leonid Viktorovich Kuz'min. "Арифметика некоторых $\ell $-расширений с тремя точками ветвления". Trudy Matematicheskogo Instituta imeni V.A. Steklova 307 (грудень 2019): 78–99. http://dx.doi.org/10.4213/tm4038.

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Пусть $\ell $ - простое регулярное нечетное число, $k$ - поле деления круга на $\ell $ частей, $k_\infty $ - круговое $\mathbb Z_\ell $-расширение поля $k$, $K$ - циклическое расширение $k$ степени $\ell $ и $K_\infty =K\cdot k_\infty $. В предположении, что в расширении $K_\infty /k_\infty $ разветвлены ровно три точки, не лежащие над $\ell $, и поле $K$ удовлетворяет некоторым дополнительным условиям, изучается структура модуля Ивасавы $T_\ell (K_\infty )$ поля $K_\infty $ как модуля Галуа. В частности, доказано, что $T_\ell (K_\infty )$ - циклический $G(K_\infty /k_\infty )$-модуль и группа
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Kofanov, V. A., and I. V. Popovich. "Sharp Nagy type inequalities for the classes of functions with given quotient of the uniform norms of positive and negative parts of a function." Researches in Mathematics 28, no. 1 (2020): 3. http://dx.doi.org/10.15421/242001.

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For any $p\in (0, \infty],$ $\omega > 0,$ $d \ge 2 \omega,$ we obtain the sharp inequality of Nagy type$$\|x_{\pm}\|_\infty \le\frac{\|(\varphi+c)_{\pm}\|_\infty}{\|\varphi+c\|_{L_p(I_{2\omega})}} \left\|x \right\|_{L_{p} \left(I_d \right)}$$on the set $S_{\varphi}(\omega)$ of $d$-periodic functions $x$ having zeros with given the sine-shaped $2\omega$-periodiccomparison function $\varphi$, where $c\in [-\|\varphi\|_\infty, \|\varphi\|_\infty]$ is such that$$ \|x_{+}\|_\infty \cdot\|x_{-}\|^{-1}_\infty = \|(\varphi+c)_{+}\|_\infty \cdot\|(\varphi+c)_{-}\|^{-1}_\infty .$$In particular, we ob
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Скасків, О. Б., та С. І. Дубей. "ПРО ОСНОВНЕ СПІВВІДНОШЕННЯ ТЕОРІЇ ВІМАНА-ВАЛІРОНА І АСИМПТОТИЧНА h-ЩІЛЬНІСТЬ ВИНЯТКОВИХ МНОЖИН". PRECARPATHIAN BULLETIN OF THE SHEVCHENKO SCIENTIFIC SOCIETY. Number, № 19(73) (10 грудня 2024): 18–23. https://doi.org/10.31471/2304-7399-2024-19(73)-18-23.

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Нехай $L$ --- клас додатних зростаючих на $[0;+\infty)$ функцій, а $L_{1}$ --- його підклас, який складається з функцій $h\in L$ таких, що $h\Big(x+\frac{1}{h(x)}\Big)=O(h(x)),(x\to +\infty).$ Для вимірної за Лебегом множини $E\subset [0;+\infty),$ що має скінченну міру Лебега $\mathop{\rm meas } E=\int_{E}dx < +\infty,$ визначимо її нижню асимптотичну $h$-щільність у нескінченності $\displaystyle {d}_{h}(E)= \varliminf_{R \rightarrow +\infty} h(R)\cdot \mathop{\rm meas }(E \cap [R;+\infty)).$ Нехай $S(a,b),$\ $-\infty\le a<b\le +\infty,$\ --- клас аналітичних в $\Pi(a,b)=\{z: a<{\rm
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Słowik, Roksana, and Driss Aiat Hadj Ahmed. "m-commuting maps on triangular and strictly triangular infinite matrices." Electronic Journal of Linear Algebra 37 (March 24, 2021): 247–55. http://dx.doi.org/10.13001/ela.2021.5083.

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Let $N_\infty(F)$ be the ring of infinite strictly upper triangular matrices with entries in an infinite field. The description of the commuting maps defined on $N_\infty(F)$, i.e. the maps $f\colon N_\infty(F)\rightarrow N_\infty(F)$ such that $[f(X),X]=0$ for every $X\in N_\infty(F)$, is presented. With the use of this result, the form of $m$-commuting maps defined on $T_\infty(F)$ -- the ring of infinite upper triangular matrices, i.e. the maps $f\colon T_\infty(F)\rightarrow T_\infty(F)$ such that $[f(X),X^m]=0$ for every $X\in T_\infty(F)$, is found.
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Лапин, Сергей Валерьевич, та Sergei Valerievich Lapin. "$D_\infty$-дифференциальные $A_\infty$-алгебры и спектральные последовательности". Математический сборник 193, № 1 (2002): 119–42. http://dx.doi.org/10.4213/sm623.

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Mihalik, Michael L. "Semistability at $\infty$, $\infty$-ended groups and group cohomology." Transactions of the American Mathematical Society 303, no. 2 (1987): 479. http://dx.doi.org/10.1090/s0002-9947-1987-0902779-7.

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Dissertations / Theses on the topic "$(\infty"

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Voigt, Matthias. "$L_\infty$-Norm Computation for Descriptor Systems." Master's thesis, Universitätsbibliothek Chemnitz, 2010. http://nbn-resolving.de/urn:nbn:de:bsz:ch1-201001050.

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In many applications from industry and technology computer simulations are performed using models which can be formulated by systems of differential equations. Often the equations underlie additional algebraic constraints. In this context we speak of descriptor systems. Very important characteristic values of such systems are the $L_\infty$-norms of the corresponding transfer functions. The main goal of this thesis is to extend a numerical method for the computation of the $L_\infty$-norm for standard state space systems to descriptor systems. For this purpose we develop a numerical method
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Fadeev, Aleksandr [Verfasser], Ivan [Akademischer Betreuer] Penkov, Ivan [Gutachter] Penkov, Alan [Gutachter] Huckleberry, and Alexey [Gutachter] Petukhov. "Classification of primitive ideals of U(o(\infty)) and U(sp(\infty)) / Aleksandr Fadeev ; Gutachter: Ivan Penkov, Alan Huckleberry, Alexey Petukhov ; Betreuer: Ivan Penkov." Bremen : IRC-Library, Information Resource Center der Jacobs University Bremen, 2019. http://d-nb.info/1202364640/34.

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DELABRE, DANIEL. "$$k2c is infty(s1) et l'extension centrale de segal du groupe des lacets de slc." Toulouse 3, 1998. http://www.theses.fr/1998TOU30137.

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Nous construisons des classes de chern a la beilinson-deligne pour des varietes differentiables lisses ci, j : ki cisinfty(x) isto hd2j-i (x, z(j)) a valeurs dans la cohomologie lisse de deligne, le complexe de deligne lisse etant le meme que son analogue analytique, pour les formes cisinfty. Les proprietes algebriques de ces classes (comportement vis a vis de la multiplication, de la lambda structure et des operations d'adams) proviennent de relations purement algebriques entre les fibres universels, et sont par consequent les memes que celles des classes analogues construites en geometrie al
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AQEL, FATIMA AL-ZAHRA' A. N. "Decay in W^{1,\infty} for the 1D semilinear damped wave equation on a bounded domain." Doctoral thesis, Università degli Studi dell'Aquila, 2020. http://hdl.handle.net/11697/156611.

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In this Ph.D. thesis, we study a semilinear wave equation with nonlinear and time-dependent damping term. After rewriting the equation as a first order system, we define a class of approximate solutions employing typical tools of hyperbolic systems of conservation laws, such as the Riemann problem. We prove that the initial-boundary value problem is well-posed for initial data in $L^\infty$ space. By recasting the problem as a discrete-time nonhomogeneous system, which is related to a probabilistic interpretation of the solution, we provide a strategy to study its long-time behavior uniform
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Brandman, Jeremy. "A level-set method for solving elliptic eigenvalue problems on hypersurfaces ; and, Finite-time blow-up of L[superscript infty] weak solutions of an aggregation equation." Diss., Restricted to subscribing institutions, 2008. http://proquest.umi.com/pqdweb?did=1619423481&sid=1&Fmt=2&clientId=1564&RQT=309&VName=PQD.

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Malakorn, Tanit. "Multidimensional Linear Systems and Robust Control." Diss., Virginia Tech, 2003. http://hdl.handle.net/10919/26845.

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This dissertation contains two parts: Commutative and Noncommutative Multidimensional ($d$-D) Linear Systems Theory. The first part focuses on the development of the interpolation theory to solve the $H^{\infty}$ control problem for $d$-D linear systems. We first review the classical discrete-time 1D linear system in the operator theoretical viewpoint followed by the formulations of the so-called Givone-Roesser and Fornasini-Marchesini models. Application of the $d$-variable $Z$-transform to the system of equations yields the transfer function which is a rational function of several complex va
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Song, Zhuoyue. "Robust analysis and synthesis for uncertain negative-imaginary systems." Thesis, University of Manchester, 2011. https://www.research.manchester.ac.uk/portal/en/theses/robust-analysis-and-synthesis-for-uncertain-negativeimaginary-systems(9de4af43-983c-42a2-bafe-062970a738be).html.

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Negative-imaginary systems are broadly speaking stable and square (equal number of inputs and outputs) systems whose Nyquist plot lies underneath (never touches for strictly negative-imaginary systems) the real axis when the frequency varies in the open interval 0 to ∞. This class of systems appear quite often in engineering applications, for example, in lightly damped flexible structures with collocated position sensors and force actuators, multi-link robots, DC machines, active filters, etc. In this thesis, robustness analysis and controller synthesis methods for uncertain negative-imaginary
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Mansouri, Mejda. "Observation et commande des systèmes de grande dimension." Electronic Thesis or Diss., Université de Lorraine, 2012. http://www.theses.fr/2012LORR0303.

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Dans ce mémoire, on s'est intéressé aux problèmes d'estimation, de filtrage H∞ et de la commande basée observateur des systèmes de grande dimension. L'étude porte sur les systèmes linéaires standards mais aussi sur les systèmes algèbro-différentiels appelés aussi systèmes singuliers pour couvrir la classe la plus large possible des systèmes de grande dimension. Ainsi, on a commencé notre travail en proposant des méthodes de synthèse d'observateurs décentralisés à interconnexions inconnues pour des systèmes de grande dimension standards et singuliers. On a cherché à éliminer l'effet des interco
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Yamamoto, Kazusa. "Control of electromechanical systems, application on electric power steering systems." Thesis, Université Grenoble Alpes (ComUE), 2017. http://www.theses.fr/2017GREAT069/document.

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De nos jours, la plupart des véhicules sont équipés de Directions Assistées Electriques (DAE). Ce type de systèmes d'aide à la conduite permet de réduire les efforts que le conducteur doit fournir pour tourner les roues. Ainsi, grâce à un moteur électrique, la DAE applique un couple additionnel en accord avec le comportement du conducteur et la dynamique du véhicule. Il est donc nécessaire de développer une commande en couple basée en particulier sur le signal provenant d'un capteur mesurant le couple agissant au niveau de la barre de torsion (correspondant à une image du couple conducteur). C
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Lemle, Ludovic Dan. "Semi-groupes integres d'operateurs, l'unicite des pre-generateurs et applications." Phd thesis, Université Blaise Pascal - Clermont-Ferrand II, 2007. http://tel.archives-ouvertes.fr/tel-00139507.

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Notre principal but est le probleme de l'unicite pour les operateurs de diffusion dans $L^\infty$. Ce travail commence par un etude des $C_0$-semi-groupes et des semi-groupes integres dans un contexte tres general. Nous etudions les $C_0$-semi-groupes sur un espace localement convexe et nous introduisons une nouvelle topologie sur l'espace dual tel que l'adjoint d'un $C_0$-semi-groupe est de classe $C_0$ par rapport a cette topologie. Les resultats les plus importants sont un theoreme de caracterisation d'un core du generateur et un theoreme de caracterisation complet d'un generateur essentiel
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Books on the topic "$(\infty"

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Pantev, Tony. Stacks and catetories in geometry, topology, and algebra: CATS4 Conference Higher Categorical Structures and Their Interactions with Algebraic Geometry, Algebraic Topology and Algebra, July 2-7, 2012, CIRM, Luminy, France. American Mathematical Society, 2015.

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Joyce, Dominic. Algebraic Geometry over $C^ Infty $-Rings. American Mathematical Society, 2019.

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$\mathcal{H}_\infty$ Control for Nonlinear Descriptor Systems. Springer-Verlag, 2006. http://dx.doi.org/10.1007/11576228.

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Gabe, James. Classification of $ Mathcal {o}_ Infty $-Stable $C^*$-Algebras. American Mathematical Society, 2024.

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Positselski, Leonid. Weakly Curved $ Mathrm {a}_{ Infty }$-Algebras over a Topological Local Ring. American Mathematical Society, 2019.

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Projective Representations and Spin Characters of Complex Reflection Groups $G(m,p,n)$ and $G(m,p,\infty)$. The Mathematical Society of Japan, 2013. http://dx.doi.org/10.2969/msjmemoirs/029010000.

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Rognes, John, and Robert R. Bruner. Adams Spectral Sequence for Topological Modular Forms. American Mathematical Society, 2022.

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Adams Spectral Sequence for Topological Modular Forms. American Mathematical Society, 2021.

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Book chapters on the topic "$(\infty"

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Saurin, Alexis. "A Linear Perspective on Cut-Elimination for Non-wellfounded Sequent Calculi with Least and Greatest Fixed-Points." In Lecture Notes in Computer Science. Springer Nature Switzerland, 2023. http://dx.doi.org/10.1007/978-3-031-43513-3_12.

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AbstractThis paper establishes cut-elimination for $$\mathsf {\mu LL^\infty }$$, $$\mathsf {\mu LK^\infty }$$ and $$\mathsf {\mu LJ^\infty }$$, that are non-wellfounded sequent calculi with least and greatest fixed-points, by expanding on prior works by Santocanale and Fortier [20] as well as Baelde et al. [3, 4]. The paper studies a fixed-point encoding of $$\textsf{LL}$$ exponentials in order to deduce those cut-elimination results from that of $$\mathsf {\mu MALL^\infty }$$. Cut-elimination for $$\mathsf {\mu LK^\infty }$$ and $$\mathsf {\mu LJ^\infty }$$ is obtained by developing appropria
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Penkov, Ivan, and Crystal Hoyt. "Tensor Modules of $$\mathfrak {sl}(\infty )$$ , $$\mathfrak {o}(\infty )$$ , $$\mathfrak {sp}(\infty )$$." In Springer Monographs in Mathematics. Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-89660-7_7.

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Wang, Guoliang, Qingling Zhang, and Xinngang Yan. "$$H_\infty $$ Control." In Analysis and Design of Singular Markovian Jump Systems. Springer International Publishing, 2014. http://dx.doi.org/10.1007/978-3-319-08723-8_4.

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Chipot, Michel. "$$L^\infty $$-Estimates." In Birkhäuser Advanced Texts Basler Lehrbücher. Springer International Publishing, 2024. http://dx.doi.org/10.1007/978-3-031-54123-0_12.

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Manetti, Marco. "$$L_{\infty }$$-Morphisms." In Springer Monographs in Mathematics. Springer Nature Singapore, 2022. http://dx.doi.org/10.1007/978-981-19-1185-9_12.

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Manetti, Marco. "$$L_{\infty }$$-Algebras." In Springer Monographs in Mathematics. Springer Nature Singapore, 2022. http://dx.doi.org/10.1007/978-981-19-1185-9_10.

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Wang, Xin, Yu Xue, Xian Zhang, and Yantao Wang. "$$H_{\infty }$$ Control." In Intelligent Control and Learning Systems. Springer Nature Singapore, 2025. https://doi.org/10.1007/978-981-96-1177-5_9.

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Golbeck, Amanda L. "Ending (1977–$$\infty $$)." In Florence Nightingale David. Springer Nature Switzerland, 2012. https://doi.org/10.1007/978-3-031-77768-4_11.

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Marichal, Jean-Luc, and Naïm Zenaïdi. "Asymptotic Analysis." In A Generalization of Bohr-Mollerup's Theorem for Higher Order Convex Functions. Springer International Publishing, 2022. http://dx.doi.org/10.1007/978-3-030-95088-0_6.

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AbstractThe asymptotic behavior of the gamma function for large values of its argument can be summarized as follows: for any a ≥ 0, we have the following asymptotic equivalences (see Titchmarsh (The Theory of Functions, 2nd edn. Oxford University Press, Oxford, 1939, Section 1.87)) $$\displaystyle \begin{aligned} \Gamma (x+a) ~\sim ~ x^a\,\Gamma (x) \mbox{as }x\to \infty {\,},\end{aligned} $$ Γ ( x + a ) ∼ x a Γ ( x ) as x → ∞ , $$\displaystyle \begin{aligned}\Gamma (x) ~\sim ~ \sqrt {2\pi }{\,}e^{-x}x^{x-\frac {1}{2}} \mbox{as }x\to \infty {\,},\end{aligned} $$ Γ ( x ) ∼ 2 π e − x x x − 1 2 a
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Penkov, Ivan, and Crystal Hoyt. "Splitting Borel Subalgebras of $$\mathfrak {sl} (\infty )$$ , $$\mathfrak {o}(\infty )$$ , $$\mathfrak {sp}(\infty )$$ and Generalized Flags." In Springer Monographs in Mathematics. Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-89660-7_5.

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Conference papers on the topic "$(\infty"

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Kumar, Amit, and Prasad Vilas Chanekar. "$\mathscr{H}_{\infty}$-Control Design Using Gradient-Descent Method." In 2024 Tenth Indian Control Conference (ICC). IEEE, 2024. https://doi.org/10.1109/icc64753.2024.10883709.

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Kang, Dongyeop, and Chaneun Park. "$\mathcal{H}_{\infty}$ Filter Design for Discrete-Time LPV Systems." In 2024 American Control Conference (ACC). IEEE, 2024. http://dx.doi.org/10.23919/acc60939.2024.10644255.

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Van Den Berg, Daniel, Delphine De Tavernier, and Jan-Willem Van Wingerden. "$\mathcal{H}_{\infty}$ Phase Locking Control for Wave Induced Wake Mixing." In 2024 American Control Conference (ACC). IEEE, 2024. http://dx.doi.org/10.23919/acc60939.2024.10644677.

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Jianwen, Wang, and Sun Liying. "$H_{\infty}$ Control of Nonlinear Singular Hamiltonian Systems with Actuator Saturation *." In 2024 2nd Power Electronics and Power System Conference (PEPSC). IEEE, 2024. https://doi.org/10.1109/pepsc63375.2024.10823536.

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Dong, Jiazheng, Haiyang Yu, and Zhibin Li. "Altitude Control of Stratospheric Aerostat Based on $\boldsymbol{H}_{\infty}$ Mixed Sensitivity." In 2024 China Automation Congress (CAC). IEEE, 2024. https://doi.org/10.1109/cac63892.2024.10865778.

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Lee, Hye Jin, Hye Seung Hong, and PooGyeon Park. "Direct Data-Driven $H_{\infty}$ Control for Linear Discrete-Time Delay Systems." In 2025 Fourth International Symposium on Instrumentation, Control, Artificial Intelligence, and Robotics (ICA-SYMP). IEEE, 2025. https://doi.org/10.1109/ica-symp63674.2025.10876461.

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Corbin, Nicholas A., and Boris Kramer. "Scalable Computation of $\mathcal{H}_{\infty}$ Energy Functions for Polynomial Drift Nonlinear Systems." In 2024 American Control Conference (ACC). IEEE, 2024. http://dx.doi.org/10.23919/acc60939.2024.10644363.

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Bristow, Douglas A., and John R. Singler. "$L_{\infty}$ Bounds for Transient Growth in Repetitive and Iterative Learning Control Systems." In 2024 American Control Conference (ACC). IEEE, 2024. http://dx.doi.org/10.23919/acc60939.2024.10644780.

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Suzuki, Masakazu, Fumikazu Tamari, Ryoji Fukuda, Seiichi Uchida, and Toshihiro Kanahori. "INFTY." In the 2003 ACM symposium. ACM Press, 2003. http://dx.doi.org/10.1145/958220.958239.

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Papadopoulou, Evanthia, and Jinhui Xu. "The $L_\infty$ Hausdorff Voronoi Diagram Revisited." In 2011 Eighth International Symposium on Voronoi Diagrams in Science and Engineering (ISVD). IEEE, 2011. http://dx.doi.org/10.1109/isvd.2011.17.

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