Imanilov
Beni Imanilov, Petah Tikva IL
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20110179191 | Remote CPU-Less Decompression - At least a method and a system are described for decompressing data at a processor-less device. The device may comprise a wireless device such as a smartphone. In a representative embodiment, the method may comprise receiving data over a first communications channel and control signals over a second communications channel. The data and the control signals are transmitted by a server. The server may be located at a wireless carrier. The server comprises a processor for generating the data and the control signals, storing the data into a memory of the processor-less device, using the control signals by a memory controller of the device to specify and read one or more portions of the data from the memory, and outputting the one or more portions as decompressed data. | 07-21-2011 |
Benjamin Imanilov, Petah IL
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20100262987 | Method And System For Synergistic Integration Of Broadcasting And Personal Channels - A communication device may receive broadcast signals and personal communication signals and may interleave and/or combine the broadcast content and personal communication content. The interleaved and/or combined content may be displayed and/or played as a single stream of video and/or audio. The personal communication content may comprise directed advertisement and/or other specified content which may be determined based on a user's location and/or a user profile. Advertisements may be monitored. The broadcast signals may comprise radio and/or TV programs and may be received via terrestrial wireless, satellite, cable and/or Internet channels. The personal communication signals may be transmitted and/or received via cellular, personal cable, personal satellite and/or a personal Internet channels. The user may respond via the personal communication signals. Broadcast and/or personal communication signals may be deciphered. Deciphering keys and/or information may be received via the personal communication signals. | 10-14-2010 |
Benjamin Imanilov, Petah Tikva IL
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20090276221 | Method and System for Processing Channel B Data for AMR and/or WAMR - A method and system for processing channel B data for AMR and/or WAMR may include generating one or more channel B data hypotheses for a present speech frame, if channel A data has a valid CRC and channel B data is unacceptable. Channel B data may be unacceptable, for example, due to high residual bit error rate and/or low Viterbi metric. Speech hypotheses may also be generated for the present speech frame, where each speech hypothesis may be based on a corresponding channel B data hypothesis and channel A data. A speech constraint metric may be assigned to each speech hypothesis that is compared to a previous frame speech data. The speech hypothesis that is closest to the previous frame speech data may be selected as a present speech data. The speech constraint metric may, for example, measure gain continuity and/or pitch continuity. | 11-05-2009 |
Benjamin Imanilov, Herzelia IL
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20150016573 | SYSTEM AND METHOD FOR PASSIVE WIRELESS MONITORING WITH EFFICIENT CHANNELIZATION - Methods and systems for passive monitoring and analysis of large numbers of cellular communication channels. The processing functions of a monitoring system are split between a front-end processor and a host that communicate over an interface. The front-end processor may comprise a signal-processing board installed in the computer, and the interface comprises a Peripheral Component Interconnect Express (PCIe) bus. A Radio Frequency (RF) receiver receives and down-coverts one or more RF bands of interest, which comprise a large number of communication channels. The front-end processor digitizes the received signals and produces a plurality of single-channel digital signals. In order to avoid high data rates, the front-end processor generates and sends to the host multi-channel digital signals instead of single-channel digital signals for processing. Each multi-channel digital signal comprises a respective set of communication channels (e.g., four channels), which are distributed over frequency. | 01-15-2015 |
Benjamin Imanilov, Hod Hasharon IL
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20160142076 | SYSTEM AND METHOD FOR IMPROVED DECODING USING IDENTIFIED RECURRING SIDE INFORMATION - Methods and systems for decoding monitored communication signals using previously identified side information. Information, which is used for decoding a given frame and is provided to the decoder not via the main communication channel between a base station and a mobile station, is referred to herein as “side information.” The side information can also be viewed as extrinsic information that was derived during previous decoding operations. The monitoring system holds, for certain frames, a-priori information of one or more data values that are expected in these frames. Decoding using this a-priori information enables an Error Correcting Code decoder to successfully decode such frames, which would otherwise fail to decode. | 05-19-2016 |