Patents by Inventor Divaydeep Sikri
Divaydeep Sikri has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Publication number: 20130322313Abstract: Access terminals are adapted to regulate power in wireless receiver circuits. In one example, access terminals include a communications interface with at least one wireless receiver circuit. A processing circuit coupled with the communications interface can receive a transmission during a Frequency Correction Channel (FCCH) frame. Following the received transmission, at least a portion of the receiver circuit may be powered down. A determination may also be made whether the received transmission was reliable. The receiver circuit can subsequently be powered up, and another transmission can be received on a subsequent channel. When the received transmission was sufficiently reliable, the other transmission may be a transmission during a Synchronization Channel (SCH) frame. When the received transmission is not sufficiently reliable, the other transmission may be another transmission received during a subsequent Frequency Correction Channel (FCCH) frame.Type: ApplicationFiled: January 11, 2013Publication date: December 5, 2013Applicant: Qualcomm IncorporatedInventors: Divaydeep Sikri, Farrukh Rashid, Helena Deirdre O'Shea, Cetin Altan, Wolfram Pieperhoff
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Publication number: 20130322328Abstract: Access terminals are adapted to employ timing information for a Synchronization Channel (SCH) associated with a neighboring base station during a re-acquisition procedure after such timing information has been determined to be inaccurate, or potentially inaccurate. For instance, an access terminal can obtain timing information for a Synchronization Channel (SCH) associated with a neighboring base station, such as by means of a combined acquisition procedure. The access terminal may subsequently determine that the obtained timing information is, or appears to be, no longer synchronized with the base station. In response to such a determination, the access terminal can employ the obtained timing information to time the opening of a receive window for re-acquiring the base station. Other aspects, embodiments, and features are also claimed and described.Type: ApplicationFiled: October 19, 2012Publication date: December 5, 2013Applicant: Qualcomm IncorporatedInventors: Divaydeep Sikri, Farrukh Rashid, Jafar Mohseni, Zhong Fan
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Patent number: 8599677Abstract: Systems and methods for multi-user detection in a multiple access system are provided. In one aspect, an apparatus is provided. The apparatus comprises a processing unit configured to process received chips into received symbols for a plurality of users and a computation unit configured to compute a multi-user matrix using a Hadamard matrix, wherein the multi-user matrix relates user symbols for the plurality of users to the received symbols. The apparatus further comprises a detection unit configured to detect the user symbols for the plurality of users using the received symbols and the computed multi-user matrix.Type: GrantFiled: May 4, 2009Date of Patent: December 3, 2013Assignee: Qualcomm IncorporatedInventors: Wenjun Li, Yingqun Yu, Farrokh Abrishamkar, Divaydeep Sikri, Insung Kang
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Publication number: 20130294551Abstract: Decoders and communications devices including such decoders can obtain a convolutional coded bit stream including a plurality of coded data bits. The convolutional coded bit stream may be coded according to one or more generator polynomials such that each information bit is related to two or more coded data bits in a manner to be determinable from a mathematical combination of the two or more coded data bits of the convolutional coded bit stream. A priori information associated with each information bit can be calculated based at least in part on the mathematical combination of the two or more coded data bits. Employing the a priori information, a binary value for each information bit can be calculated. Other aspects, embodiments, and features are also claimed and described.Type: ApplicationFiled: May 4, 2012Publication date: November 7, 2013Applicant: QUALCOMM INCORPORATEDInventor: Divaydeep Sikri
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Publication number: 20130294550Abstract: Decoder and communications devices including such decoders can obtain a convolutional coded bit stream including a plurality of coded data bits. According to some implementations, if a signal quality associated with the convolutional coded bit stream is above a predetermined threshold, a decoded value for each information bit may be calculated at least from a modulo 2 sum of a coded data bit added to at least one other coded data bit, at least one previously calculated information bit, or a combination of at least one other coded data bit and at least one previously calculated information bit. Also, according to some implementations, if the signal quality associated with the convolutional coded bit stream is not above the predetermined threshold, the convolutional coded bit stream may be decoded with a conventional convolutional decoding scheme. Other aspects, embodiments, and features are also claimed and described.Type: ApplicationFiled: May 4, 2012Publication date: November 7, 2013Applicant: QUALCOMM INCORPORATEDInventor: Divaydeep Sikri
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Patent number: 8576743Abstract: Estimating an unknown frequency error of a tone signal may comprise sampling, within an error bandwidth, wireless signals including the tone signal that occupy the error bandwidth to generate signal samples, and repeatedly, for different frequency offsets: applying a frequency offset to the signal samples to produce offset values that represent the signals occupying an offset bandwidth equal to the error bandwidth offset by an offset frequency; estimating, within a frequency estimation range less than the error bandwidth, a tone frequency error using the offset values; and measuring a signal-to-noise ratio of the tone signal using the signal samples and the estimated tone frequency error. Other aspects, embodiments, and features are also claimed and discussed.Type: GrantFiled: December 21, 2011Date of Patent: November 5, 2013Assignee: QUALCOMM IncorporatedInventors: Divaydeep Sikri, Hassan Rafique, Cetin Altan
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Patent number: 8509293Abstract: A method for estimating timing in a wireless communication comprises the steps of receiving a plurality of symbol bursts corresponding to a plurality of time slots and selecting a subset of symbols from a first symbol burst of the plurality of symbol bursts. The subset comprises a first midamble symbol. The method further comprises the steps of calculating, for each symbol in the subset, a corresponding midamble estimation error, and determining the lowest calculated midamble estimation error to determine a timing for the first symbol burst. The method further comprises the steps of processing the first symbol burst utilizing the timing determined for the first symbol burst, and processing a second symbol burst of the plurality of symbol bursts utilizing the timing determined for the first symbol burst.Type: GrantFiled: August 19, 2008Date of Patent: August 13, 2013Assignee: QUALCOMM IncorporatedInventors: Divaydeep Sikri, Erdogan Dede, Farrokh Abrishamkar, Philip J. C. Children, Nico De Laurentiis
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Patent number: 8503591Abstract: A method for suppressing interference in a wireless communication is provided. The method comprises receiving a burst of symbols, generating a plurality of timing hypotheses for the burst of symbols, and calculating, for each timing hypothesis, a plurality of weights for an interference suppression filter based upon a subset of the burst of symbols. The method further comprises, for each timing hypothesis, filtering the subset of the burst of symbols using the interference suppression filter with the corresponding plurality of weights, and selecting one of the plurality of timing hypotheses corresponding to a selection criteria. The method further comprises equalizing and decoding the filtered burst of symbols based upon the selected one of the plurality of timing hypotheses.Type: GrantFiled: August 19, 2008Date of Patent: August 6, 2013Assignee: QUALCOMM IncorporatedInventors: Divaydeep Sikri, Farrokh Abrishamkar, Michael McCloud
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Publication number: 20130148711Abstract: A two stage interference cancellation (IC) process includes a linear IC stage that suppresses co-channel interference (CCI) and adjacent channel interference (ACI). The linear IC stage disambiguates otherwise super-trellis data for non-linear cancellation. Soft linear IC processing is driven by a-posteriori probability (Apop) information. A second stage performs expectation maximization/Baum Welch (EM-BW) processing that reduces residual ISI left over from the first stage and also generates the Apop which drives the soft linear IC in an iterative manner.Type: ApplicationFiled: June 11, 2012Publication date: June 13, 2013Applicant: QUALCOMM IncorporatedInventors: Farrokh Abrishamkar, Divaydeep Sikri, Ken Delgado
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Publication number: 20130128942Abstract: An interference cancellation receiver for a pre-coded orthogonal frequency division multiplexed (OFDM) based system combines temporal interference cancellation within the OFDM framework. Multi-path equalization and inter-symbol interference (ISI) cancellation are performed on a time domain channel estimate of a received signal. An output from the multi-path equalization is transformed to the frequency domain. Inter-channel interference (ICI) is performed in the frequency domain on an equalized signal from the multi-path equalization after transforming the equalized signal from the time domain to the frequency domain.Type: ApplicationFiled: May 22, 2012Publication date: May 23, 2013Applicant: QUALCOMM IncorporatedInventors: Divaydeep Sikri, Farrokh Abrishamkar, Bahadir Canpolat
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Patent number: 8396440Abstract: A signal reception method includes receiving a signal over a channel, producing a first equalized signal, a first interference suppression filter and a first estimate of the channel using a portion of a the received signal, dividing the received signal into a plurality of signal blocks, and for each one of the plurality of signal blocks, producing a second equalized signal using a portion of the first equalized signal by selecting from one of a linear estimator or a non-linear estimator and estimating symbols received in the one of the plurality of signal blocks based on the second equalized signal.Type: GrantFiled: June 22, 2010Date of Patent: March 12, 2013Assignee: QUALCOMM IncorporatedInventors: Bahadir Canpolat, Ming Yan, Farrokh Abrishamkar, Divaydeep Sikri
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Publication number: 20120327793Abstract: Estimating an unknown frequency error of a tone signal may comprise sampling, within an error bandwidth, wireless signals including the tone signal that occupy the error bandwidth to generate signal samples, and repeatedly, for different frequency offsets: applying a frequency offset to the signal samples to produce offset values that represent the signals occupying an offset bandwidth equal to the error bandwidth offset by an offset frequency; estimating, within a frequency estimation range less than the error bandwidth, a tone frequency error using the offset values; and measuring a signal-to-noise ratio of the tone signal using the signal samples and the estimated tone frequency error. Other aspects, embodiments, and features are also claimed and discussed.Type: ApplicationFiled: December 21, 2011Publication date: December 27, 2012Applicant: QUALCOMM IncorporatedInventors: Divaydeep Sikri, Hassan Rafique, Cetin Altan
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Patent number: 8331504Abstract: Systems and methods for multi-user interference cancellation are provided. In one aspect of the disclosure, an apparatus is provided. The apparatus comprises a processing unit configured to process received chips into received symbols for a plurality of users and a detection unit configured to detect user symbols from the received symbols. The apparatus also comprises an interference cancellation unit configured to compute multi-user interference using the detected user symbols and to remove the computed multi-user interference from the received symbols. The apparatus further comprises a redetection unit configured to redetect user symbols from the received symbols with the computed multi-user interference removed.Type: GrantFiled: May 4, 2009Date of Patent: December 11, 2012Assignee: Qualcomm IncorporatedInventors: Yingqun Yu, Farrokh Abrishamkar, Divaydeep Sikri, Michael McCloud
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Publication number: 20120220292Abstract: Embodiments of the present invention include devices, systems and methods for prevention of dropped calls. For example, a method for preventing dropped voice calls can be performed by a base station. Multiple reports are received from multiple wireless communication devices. A first wireless communication device having a poor received signal is identified using the reports. A sub-channel power imbalance ratio is adjusted so that the base station gives favorable power imbalance to the first wireless communication device over a second wireless communication device. The second wireless communication device is paired with the first wireless communication device. Adjusting the sub-channel power imbalance ratio prevents a voice call by the first wireless communication device from being dropped that would otherwise be dropped. Other aspects, embodiments and features are also claimed and described.Type: ApplicationFiled: February 23, 2012Publication date: August 30, 2012Applicant: QUALCOMM INCORPORATEDInventors: Zhi-Zhong YU, Divaydeep Sikri
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Publication number: 20120051303Abstract: Embodiments of the present invention include wireless communication systems having one or more network components that can communicate with at least one mobile station in an interference environment. A transmitter can transmit data indicating a set of communication modes in which a mobile station is capable of operating and for at least one mode of communication in the set an indication of interference rejection capability. The indicating data can be received by a receiver. A resource allocator can allocate system resources based on the indicating data for use during a connection between network components (e.g., a network apparatus and a mobile station). Allocation of system resources can fully or partially depend on a connection's communication mode, an indication of interference rejection capability of a mobile station for the mode of communication of the connection, and/or an interference environment expected during the connection. Other aspects, embodiments, and features are also claimed and described.Type: ApplicationFiled: August 25, 2011Publication date: March 1, 2012Applicant: QUALCOMM INCORPORATEDInventors: Mungal Singh Dhanda, Zhi-Zhong Yu, Divaydeep Sikri
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Publication number: 20120014482Abstract: Data communication devices, methods, and systems are discussed in this application. In one embodiment, a receiving apparatus generally comprises a detector, an indicator, and a decision device. The detector can detect a number of data streams contained in a signal received on a single physical channel. Detection can be made by comparing a received signal with one or more predetermined sequences and identifying one or more of the plural predetermined sequences as being likely contained within the received signal. Each data stream can be associated with at least one predetermined sequences. The indicator can provide an indication of the data streams likely contained in the signal based on the identified sequences. A decision device can provide data defining a receiver configuration based on the indication, the receiver configuration being suitable for configuring a decoder to decode only the one or more data streams indicated as being likely contained in the signal.Type: ApplicationFiled: July 12, 2011Publication date: January 19, 2012Applicant: QUALCOMM INCORPORATEDInventors: Zhi-Zhong Yu, Divaydeep Sikri
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Publication number: 20110312275Abstract: A signal reception method includes receiving a signal over a channel, producing a first equalized signal, a first interference suppression filter and a first estimate of the channel using a portion of a the received signal, dividing the received signal into a plurality of signal blocks, and for each one of the plurality of signal blocks, producing a second equalized signal using a portion of the first equalized signal by selecting from one of a linear estimator or a non-linear estimator and estimating symbols received in the one of the plurality of signal blocks based on the second equalized signal.Type: ApplicationFiled: June 22, 2010Publication date: December 22, 2011Applicant: QUALCOMM INCORPORATEDInventors: Bahadir Canpolat, Ming Yan, Farrokh Abrishamkar, Divaydeep Sikri
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Publication number: 20110305303Abstract: A method for timing and frequency synchronization in a wireless system is provided. The method comprises the steps of receiving a burst of symbols, selecting a subset of the burst of symbols, iteratively adjusting the subset of the burst of symbols by a plurality of timing offsets and calculating, for each timing offset, a first performance metric corresponding to the adjusted subset. The method further comprises the steps of determining one of the plurality of timing offsets to be a preferred timing offset based upon the first performance metric thereof, iteratively rotating the subset of the burst of symbols by a plurality of frequency offsets and calculating, for each frequency offset, a second performance metric corresponding to the rotated subset, and determining one of the plurality of frequency offsets to be a preferred frequency offset based upon the second performance metric thereof.Type: ApplicationFiled: August 23, 2011Publication date: December 15, 2011Applicant: QUALCOMM IncorporatedInventors: Divaydeep Sikri, Farrokh Abrishamkar, Ming Yan, Nico De Laurentiis
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Patent number: 7933256Abstract: A method for midamble estimation comprises the steps of receiving a burst of symbols, selecting a subset of the burst of symbols that comprises a first midamble symbol, calculating, for each symbol in the subset, a corresponding midamble estimation error, and determining the lowest calculated midamble estimation error to locate the first midamble symbol. A receiver comprises an antenna configured to receive a burst of symbols, a timing estimator configured to select a subset of the burst of symbols that comprises a first midamble symbol, a midamble estimator configured to calculate, for each symbol in the subset, a corresponding midamble estimation error, and a processor configured to select the symbol in the subset corresponding to a lowest calculated midamble estimation error as the first midamble symbol.Type: GrantFiled: February 27, 2008Date of Patent: April 26, 2011Assignee: Qualcomm IncorporatedInventors: Farrokh Abrishamkar, Divaydeep Sikri
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Publication number: 20110051864Abstract: A multi-stage interference suppression receiver includes a short equalizer section configured to operate on a first portion of a received signal received over a channel to produce a first equalized signal and a first estimate of the channel, a channel estimator section configured to operate on the first equalized signal to produce a second equalized signal, the channel estimator section comprising a linear estimator and a non-linear estimator, a long equalizer section configured to operate on a second portion of the received signal to produce a first estimate of symbols in the received signal and a second estimate of the channel and an interference canceller section configured to operate on the first estimate of symbols in the received signal to generate a second estimate of symbols in the received signal based on, at least in part, the second estimate of the channel.Type: ApplicationFiled: September 3, 2009Publication date: March 3, 2011Applicant: QUALCOMM IncorporatedInventors: Raghu N. Chalia, Bahadir Canpolat, Farrokh Abrishamkar, Divaydeep Sikri