Publication Cover
Applicable Analysis
An International Journal
Volume 63, 1996 - Issue 3-4
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Original Articles

Exact controllability of second-order hyperbolic equations with impulse controls

Pages 223-238 | Received 01 Nov 1996, Published online: 02 May 2007

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (2)

Hanan Najib & Mohamed Ouzahra. (2023) Output finite-time stabilisation of a class of linear and bilinear control systems. International Journal of Control 0:0, pages 1-11.
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Akram Ben Aissa & Walid Zouhair. (2022) Qualitative properties for the 1 − D impulsive wave equation: controllability and observability. Quaestiones Mathematicae 45:8, pages 1229-1241.
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Articles from other publishers (18)

Salah-Eddine Chorfi, Ghita El Guermai, Lahcen Maniar & Walid Zouhair. (2023) Finite-Time Stabilization and Impulse Control of Heat Equation with Dynamic Boundary Conditions. Journal of Dynamical and Control Systems 29:4, pages 1585-1615.
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Hamid Maarouf, Lahcen Maniar, Ilham Ouelddris & Jawad Salhi. (2023) Impulse controllability for degenerate singular parabolic equations via logarithmic convexity method. IMA Journal of Mathematical Control and Information.
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Mahmoud Baroun, Hind El Baggari, Ilham Ouled Driss & Said Boulite. (2023) Impulse controllability for the heat equation with inverse square potential and dynamic boundary conditions. IMA Journal of Mathematical Control and Information 40:2, pages 353-384.
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Salah-Eddine Chorfi, Ghita El Guermai, Lahcen Maniar & Walid Zouhair. (2022) Logarithmic convexity and impulsive controllability for the one-dimensional heat equation with dynamic boundary conditions. IMA Journal of Mathematical Control and Information 39:3, pages 861-891.
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Salah-Eddine Chorfi, Ghita El Guermai, Lahcen Maniar & Walid Zouhair. (2022) Impulse null approximate controllability for heat equation with dynamic boundary conditions. Mathematical Control and Related Fields 0:0, pages 0.
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Alexander Y. KhapalovAlexander Y. Khapalov. 2017. Mobile Point Sensors and Actuators in the Controllability Theory of Partial Differential Equations. Mobile Point Sensors and Actuators in the Controllability Theory of Partial Differential Equations 147 162 .
Alexander Y. KhapalovAlexander Y. Khapalov. 2017. Mobile Point Sensors and Actuators in the Controllability Theory of Partial Differential Equations. Mobile Point Sensors and Actuators in the Controllability Theory of Partial Differential Equations 123 143 .
Alexander Y. KhapalovAlexander Y. Khapalov. 2017. Mobile Point Sensors and Actuators in the Controllability Theory of Partial Differential Equations. Mobile Point Sensors and Actuators in the Controllability Theory of Partial Differential Equations 97 120 .
Alexander Y. KhapalovAlexander Y. Khapalov. 2017. Mobile Point Sensors and Actuators in the Controllability Theory of Partial Differential Equations. Mobile Point Sensors and Actuators in the Controllability Theory of Partial Differential Equations 77 95 .
Alexander Y. KhapalovAlexander Y. Khapalov. 2017. Mobile Point Sensors and Actuators in the Controllability Theory of Partial Differential Equations. Mobile Point Sensors and Actuators in the Controllability Theory of Partial Differential Equations 63 76 .
Alexander Y. KhapalovAlexander Y. Khapalov. 2017. Mobile Point Sensors and Actuators in the Controllability Theory of Partial Differential Equations. Mobile Point Sensors and Actuators in the Controllability Theory of Partial Differential Equations 41 62 .
Alexander Y. KhapalovAlexander Y. Khapalov. 2017. Mobile Point Sensors and Actuators in the Controllability Theory of Partial Differential Equations. Mobile Point Sensors and Actuators in the Controllability Theory of Partial Differential Equations 29 37 .
Alexander Y. KhapalovAlexander Y. Khapalov. 2017. Mobile Point Sensors and Actuators in the Controllability Theory of Partial Differential Equations. Mobile Point Sensors and Actuators in the Controllability Theory of Partial Differential Equations 13 27 .
Alexander Y. KhapalovAlexander Y. Khapalov. 2017. Mobile Point Sensors and Actuators in the Controllability Theory of Partial Differential Equations. Mobile Point Sensors and Actuators in the Controllability Theory of Partial Differential Equations 203 222 .
Alexander Y. KhapalovAlexander Y. Khapalov. 2017. Mobile Point Sensors and Actuators in the Controllability Theory of Partial Differential Equations. Mobile Point Sensors and Actuators in the Controllability Theory of Partial Differential Equations 185 201 .
Alexander Y. KhapalovAlexander Y. Khapalov. 2017. Mobile Point Sensors and Actuators in the Controllability Theory of Partial Differential Equations. Mobile Point Sensors and Actuators in the Controllability Theory of Partial Differential Equations 163 182 .
Alexander Y. KhapalovAlexander Y. Khapalov. 2017. Mobile Point Sensors and Actuators in the Controllability Theory of Partial Differential Equations. Mobile Point Sensors and Actuators in the Controllability Theory of Partial Differential Equations 1 10 .
Emmanuel Trélat, Lijuan Wang & Yubiao Zhang. (2016) Impulse and Sampled-Data Optimal Control of Heat Equations, and Error Estimates. SIAM Journal on Control and Optimization 54:5, pages 2787-2819.
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