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Abdelkrim
Abdelkrim Benchaib, Montigny Le Bretonneux FR
| Patent application number | Description | Published |
|---|---|---|
| 20100176769 | CONTROL SYSTEM AND A METHOD OF CONTROLLING OF A TCSC IN AN ELECTRICAL TRANSMISSION NETWORK, USING IN PARTICULAR AN APPROACH OF THE LYAPUNOV TYPE - A system and method of controlling a TCSC disposed on a high voltage line of an electrical transmission network. The system comprises: (a) a voltage measuring module; (b) a current measuring module; (c) a regulator, working in accordance with a non-linear control law to receive on its input the output signals from the two modules for measuring voltage and current, and a reference voltage corresponding to the fundamental of the voltage which is to obtained across the TCSC; (d) a module for extracting the control angle in accordance with an extraction algorithm; and (e) a module for controlling the thyristors (T | 07-15-2010 |
| 20100194357 | CONTROL SYSTEM AND A METHOD OF CONTROLLING OF A TCSC IN AN ELECTRICAL TRANSMISSION NETWORK, USING IN PARTICULAR AN APPROACH OF THE LYAPUNOV TYPE - A system and method of controlling a TCSC disposed on a high voltage line of an electrical transmission network. The system comprises: (a) a voltage measuring module; (b) a current measuring module; (c) a regulator, working in accordance with a non-linear control law to receive on its input the output signals from the two modules for measuring voltage and current, and a reference voltage corresponding to the fundamental of the voltage which is to obtained across the TCSC; (d) a module for extracting the control angle in accordance with an extraction algorithm; and (e) a module for controlling the thyristors (T | 08-05-2010 |
| 20100292863 | CONTROL SYSTEM AND A METHOD OF CONTROLLING A TCSC IN AN ELECTRICAL TRANSMISSION NETWORK, IN PARTICULAR BY AN APPROACH USING SLIDING MODES - A system and method of controlling a TCSC disposed on a high voltage line of an electrical transmission network. The system comprises: (a) a voltage measuring module; (b) a current measuring module; (c) a regulator, working in accordance with a non-linear control law to receive on its input the output signals from the two modules for measuring voltage and current, and a reference voltage corresponding to the fundamental of the voltage which is to obtained across the TCSC; (d) a module for extracting the control angle in accordance with an extraction algorithm; and (e) a module for controlling the thyristors (T | 11-18-2010 |
Abdelkrim Chehaibou, Metz FR
| Patent application number | Description | Published |
|---|---|---|
| 20090133773 | Method for machining metal conduits to form a V-shaped profiled section n pipeline metal pipes; metal conduit; welding method combining in a common laser fusion bath and electric arc for assembling said conduits - The invention concerns a method for machining the ends of a metal conduit ( | 05-28-2009 |
| 20100276402 | WELDING METHOD COMBINING A LASER BEAM AND THE ELECTRIC ARC WITH A CONSUMABLE ELECTRODE FOR ASSEMBLING ABUTTING METAL CONDUITS TO FORM PIPELINE METAL PIPES - The invention concerns a welding device and a welding method, in particular of tubular parts (c | 11-04-2010 |
Abdelkrim Choujaa, Serre Les Sapins FR
| Patent application number | Description | Published |
|---|---|---|
| 20080211602 | High-Frequency Acoustic Wave Device - An acoustic wave device comprising a piezoelectric layer on an omnidirectional acoustic mirror and excitation and/or reception means on a surface of said piezoelectric layer, capable of exciting waves in a band gap of the acoustic mirror. | 09-04-2008 |
| 20110133859 | HIGH-FREQUENCY ACOUSTIC WAVE DEVICE - An acoustic wave device comprising a piezoelectric layer on an omnidirectional acoustic mirror and excitation and/or reception means on a surface of said piezoelectric layer, capable of exciting waves in a band gap of the acoustic mirror. | 06-09-2011 |
Abdelkrim El Kadib, Montpellier FR
| Patent application number | Description | Published |
|---|---|---|
| 20110009582 | Preparation of Activating Supports - The present invention discloses a method for preparing an activating support and its use to activate metallocene or post-metallocene catalyst component for use in the oligomerisation and polymerisation of ethylene and alpha-olefins. | 01-13-2011 |
Abdelkrim El Kadib, Aourir MA
| Patent application number | Description | Published |
|---|---|---|
| 20110178258 | Supported Ionic Liquids or Activating Supposrts - The present invention relates to the covalent anchorage of non-coordinating anions on mineral supports to prepare supported ionic liquids and to their use as activating supports for the polymerisation of ethylene and alpha-olefins. The invention also discloses the concomitant covalent anchorage of zwitterionic systems containing both the non-coordinating anion and the counter cation parts of the ionic liquids and of the activating supports. | 07-21-2011 |
Abdelkrim Habi, Pierrefonds CA
| Patent application number | Description | Published |
|---|---|---|
| 20090011997 | BIFUNCTIONAL HORMONE AND USES THEREOF - A bifunctional hormone exhibiting an alpha-MSH activity and a natriuretic peptide activity is described. The bifunctional hormone comprises for example a first domain having alpha-MSH related hormonal activity covalently linked to a second domain having natriuretic peptide related hormonal activity. The bifunctional hormone of the present invention is useful for example for the prevention and/or treatment of renal related diseases or conditions, such as acute renal failure (ARF) or acute kidney injury (AKI). | 01-08-2009 |
| 20110021616 | HALOGENATED RHODAMINE DERIVATIVES AND APPLICATIONS THEREOF - Methods for treating a bacterial infection in a tissue sample are described. Tissue samples that are harvested from a patient may be infected with bacteria. A rhodmaine compound is mixed with the infected tissue sample to form a mixture. The mixture is then exposed to radiant energy to inhibit or kill the bacteria. The exposed mixture is then transplanted into the patient. Examples of rhodamine compounds include 2′-(6-dimethylamino-3-dimethylimino-3H-xanthen-9-yl) 4′, 5′-dichloro-benzoic acid methyl ester hydrochloride; 4,5-dibromorhodamine 110 2-(2-methoxy ethoxy)ethyl ester hydrobromide; acetate salt of 2,7-dibromorhodamine B hexyl ester; acetate salt of 2,7-dibromorhodamine B methyl ester; 4,5-dibromorhodamine 6G hydrobromide; rhodamine B 3-bromopropyl; acetate salt of 2,7-dibromo-4′-carboxytetramethylrosamine methyl ester; 4-bromo-5-phenyl rhodamine B methyl ester chloride; 2,7-dibromo-4,5-dimethyl rhodamine B methyl ester bromide; 2-bromo-7-ethynyl rhodamine B methyl ester bromide; and 4,5-dibromo-2,7-di-n-butyl rhodamine B methyl ester bromide. | 01-27-2011 |
Abdelkrim Habi, Ville D'Anjou CA
| Patent application number | Description | Published |
|---|---|---|
| 20090176869 | Halogenated Rhodamine Derivatives and Applications Thereof - Compounds of formula I: | 07-09-2009 |
Abdelkrim Khelif, Besancon FR
| Patent application number | Description | Published |
|---|---|---|
| 20080211602 | High-Frequency Acoustic Wave Device - An acoustic wave device comprising a piezoelectric layer on an omnidirectional acoustic mirror and excitation and/or reception means on a surface of said piezoelectric layer, capable of exciting waves in a band gap of the acoustic mirror. | 09-04-2008 |
| 20110133859 | HIGH-FREQUENCY ACOUSTIC WAVE DEVICE - An acoustic wave device comprising a piezoelectric layer on an omnidirectional acoustic mirror and excitation and/or reception means on a surface of said piezoelectric layer, capable of exciting waves in a band gap of the acoustic mirror. | 06-09-2011 |
Abdelkrim Zouani, Canton, MI US
| Patent application number | Description | Published |
|---|---|---|
| 20100037848 | VALVE COVER WITH DECOUPLED NVH ISOLATION AND SEALING FEATURES - A cylinder head cover, a system, and a method are disclosed for sealing a cylinder head and isolating cylinder head vibrations from a cylinder head cover body. An example cylinder head cover may include a bottom carrier having a first end configured to be disposed in sealing engagement with a cylinder head. The bottom carrier may also have a second end. A cover body may be configured to provide a covering surface, and may have a side wall extending toward the cylinder head. A resilient joining element may connect the bottom carrier second end to an edge of the cover body side wall in sealing engagement. An example method may include positioning a substantially rigid bottom carrier on the cylinder head, the bottom carrier including a sealing member configured for sealing engagement with the cylinder head; sealingly connecting a membranoid elastomeric joining element to the bottom carrier; connecting the cylinder head body to the joining element; and forming a substantially continuous sealing membrane with a combination of the bottom carrier the joining element and the cylinder head body. | 02-18-2010 |
