Anghel
Alexandra Teodora Anghel, The Hague NL
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20110044889 | DOPED HYDROGEN STORAGE MATERIAL - The present invention relates to a doped hydrogen storage material according to the general formula: Mg | 02-24-2011 |
20120167617 | METHOD FOR TREATING A MULTI-PHASE HYDROCARBON STREAM AND AN APPARATUS THEREFOR - A multi-phase hydrocarbon stream ( | 07-05-2012 |
20120305839 | DOPED HYDROGEN STORAGE MATERIAL - A doped hydrogen storage material according to the general formula: | 12-06-2012 |
Andreea S. Anghel, Adliswil CH
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20140269403 | Coherent Load monitoring of physical and virtual networks with synchronous status acquisition - Embodiments relate to creating a coherent load or congestion map that displays the simultaneous activity of all queues of physical and virtual switches and adapters in a network without forcing clock synchronization. An aspect includes sampling, by a central processing device, a status of all queues in a plurality of elements in a network. The sampled data flows are received from the plurality of elements in the network and an image is created of the network. The image includes the status of all sampled queues in the plurality of elements at a point in time. Accordingly, a load map is created without synchronizing clocks of the plurality of elements. The load map is assembled using segments of the image of the network. | 09-18-2014 |
Andreea-Simona Anghel, Adliswil CH
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20150188820 | QUANTIZED CONGESTION NOTIFICATION (QCN) EXTENSION TO EXPLICIT CONGESTION NOTIFICATION (ECN) FOR TRANSPORT-BASED END-TO-END CONGESTION NOTIFICATION - According to one embodiment, a method for handling congestion in a network includes determining that there is congestion on a first device in a network, setting a congestion indicator in a header of a packet to indicate an amount of congestion at the first device, sending the packet to all devices that send traffic to the first device, receiving the packet having the multi-bit indicator in a header thereof at a device that sends traffic to the first device, and reducing a congestion window by a factor of between about 5% and about 50% based on a severity of the congestion indicated by the multi-bit indicator, wherein the congestion window is reduced by a greater factor when the congestion is indicated as being more severe. Other systems and methods for handling congestion in a network are described according to more embodiments. | 07-02-2015 |
Bogdan Anghel, Pierrefonds CA
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20150279094 | System and Method for Rendering Virtual Contaminants - A method and a computer system for performing a computer simulation in which virtual contaminants are rendered on a rendered scene of the computer simulation. A memory module is sued for loading thereinto a model defining a virtual environment of the computer simulation, the virtual environment defining a plurality of zones comprising a first additive zone and a second subtractive zone, the second subtractive zone being at least partially enclosed within the first additive zone. An image generator module is used for adding a virtual contaminant over the first additive zone, removing, at least partially, the virtual contaminant within the second subtractive zone leaving a remaining virtual contaminant in the first additive zone and rendering an image for display comprising the remaining virtual contaminant in the virtual environment using a visual texture of the virtual contaminant. The computer simulation may be a vehicle computer simulation. | 10-01-2015 |
20150279095 | System and Method for Modeling Virtual Contaminants - A method and a computer system for modeling, in a virtual environment of a computer simulation, virtual contaminants in a scene to be rendered. A processing module, using a graphical user interface on a display device, is used for define, in a model, a first additive zone of the scene over which a virtual contaminant is to be added, defining, in the model, a second subtractive zone of the scene over which the virtual contaminant is to be at least partially removed, the second subtractive zone being at least partially enclosed within the first additive zone and a memory module is used for storing the model, the model being made available through a storage module for rendering the virtual contaminants on the scene in the computer simulation. A preview mode may be used for launching the computer simulation at a rate lower than the expected rate of the computer simulation. | 10-01-2015 |
Costin Anghel, Vanves FR
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20140035040 | TUNNEL FIELD EFFECT TRANSISTOR - A TFET transistor includes an intrinsic channel, source and drain extension regions, source and drain conductive regions, a gate surmounting the channel and laid out such that an end of the channel is not covered by the gate. The transistor includes a first arrangement for forming an isolating space between the sides of the gate and the source conductive region including a first and a second dielectric spacer. The extension region has a thickness strictly greater than that of the channel such that the extension region has an increased thickness opposite the gate dielectric layer. The first face of the first spacer is in contact with the side of the gate followed by the side of the gate dielectric layer such that the first face covers the whole of the side of the layer. | 02-06-2014 |
20140252407 | TUNNEL EFFECT TRANSISTOR - A tunnel effect transistor includes a channel made of an intrinsic semiconductor material; source and drain extension regions on either side of the channel, the source extension region being made of a semiconductor material doped according to a first type of doping P or N and the drain extension region being made of a semiconductor material doped according to a second type of doping opposite to said first type of doping; source and drain conductive regions respectively in contact with the source and drain extension regions; a gate structure including a gate dielectric layer in contact with the channel and a gate area arranged such that the gate dielectric layer is arranged between the gate area and the channel; and an area doped according to the first type of doping inserted between the channel and the drain extension region. | 09-11-2014 |
Emil Anghel, Hartford, CT US
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20140004092 | Cancer tumor encapsulation procedure | 01-02-2014 |
Vinicius Anghel, Deep River CA
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20140332685 | DETECTING HIGH ATOMIC NUMBER MATERIALS WITH COSMIC RAY MUON TOMOGRAPHY - A method is proposed herein to detect high atomic number materials, such as Special Nuclear Materials, within a container based on muon tomography. The container is modeled as a plurality of volume elements. Information related to an initial trajectory and a final trajectory of each muon passing through the container is received. Additionally, a set of initial outer prong vectors and a set of final outer prong vectors are created. Then, a plurality of vector combinations are created from a selected initial vector and a selected final vector. A metric is determined and associated with each vector combination. A subset of the plurality of vector combinations is associated with each volume element and an estimated scattering density is determined and assigned to the volume element. Based on the estimated scattering density assigned to the volume elements, a three dimensional image of the container may be generated. | 11-13-2014 |