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公开(公告)号:US20190140707A1
公开(公告)日:2019-05-09
申请号:US16125711
申请日:2018-09-09
Applicant: INTEL CORPORATION
Inventor: Artyom Lomayev , Alexander Maltsev , Carlos Cordeiro , Michael Genossar
IPC: H04B7/0413 , H04B7/06 , H04L27/26
Abstract: For example, a wireless station may be configured to generate a plurality of time-domain streams in a time domain, the plurality of time-domain streams comprising at least a first time-domain stream comprising a first data sequence in a first interval and a second time-domain stream comprising a second data sequence in the first interval, the first time-domain stream comprises a time-inverted and sign-inverted complex conjugate of the second data sequence in a second interval subsequent to the first interval, and the second time-domain stream comprises a time-inverted complex conjugate of the first data sequence in the second interval; to convert the plurality of time-domain streams into a respective plurality of frequency-domain streams in a frequency domain; and to transmit a Multiple-Input-Multiple-Output (MIMO) transmission based on the plurality of frequency-domain streams.
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公开(公告)号:US10153935B2
公开(公告)日:2018-12-11
申请号:US15391270
申请日:2016-12-27
Applicant: INTEL CORPORATION
Inventor: Artyom Lomayev , Alexander Kostin , Iaroslav P. Gagiev , Alexander Maltsev , Michael Genossar , Carlos Cordeiro
Abstract: Some demonstrative embodiments include apparatus, system and method of communicating a transmission according to a rotated 256 Quadrature Amplitude Modulation (QAM) scheme. For example, an apparatus may include logic and circuitry configured to cause a wireless station to modulate a Single Carrier (SC) transmission according to a rotated 256-QAM scheme; and to transmit the SC transmission over a millimeter Wave (mmWave) frequency band.
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43.
公开(公告)号:US10056960B2
公开(公告)日:2018-08-21
申请号:US15084746
申请日:2016-03-30
Applicant: INTEL CORPORATION
Inventor: Artyom Lomayev , Alexander Maltsev , Michael Genossar , Carlos Cordeiro
IPC: H04L27/00 , H04B7/06 , H04B7/0413
CPC classification number: H04B7/068 , H04B7/0413
Abstract: For example, a wireless station may be configured to modulate a plurality of data bit sequences into a plurality of data blocks in a frequency domain according to a dual carrier modulation, a data bit sequence of the plurality of data bit sequences to be modulated into first and second consecutive symbols in a data block of the plurality of data blocks; to map the plurality of data blocks to a plurality of spatial streams by mapping the first symbol to a first data subcarrier in a first sub-band of a signal band in a first spatial stream of the plurality of spatial streams, and mapping the second symbol to a second data subcarrier in a second sub-band of the signal band in a second spatial stream of the plurality of spatial streams; and to transmit a Multi-In-Multi-Out (MIMO) transmission based on the plurality of spatial streams.
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44.
公开(公告)号:US20170324453A1
公开(公告)日:2017-11-09
申请号:US15390637
申请日:2016-12-26
Applicant: INTEL CORPORATION
Inventor: Artyom Lomayev , Iaroslav P. Gagiev , Alexander Maltsev , Michael Genossar , Carlos Cordeiro
IPC: H04B7/0413 , H04B7/06
CPC classification number: H04B7/0413 , H04B7/0634 , H04L5/0048
Abstract: Some demonstrative embodiments include apparatus, system and method of communicating a Multiple-Input-Multiple-Output (MIMO) transmission with Golay Sequence Set (GSS). For example, an apparatus may include logic and circuitry configured to cause a wireless station to generate a Golay Sequence Set (GSS) including a plurality of complementary Golay sequence pairs based on a plurality of weight vectors, the plurality of weight vectors including one or more weight vectors corresponding to one or more respective stream numbers, which are equal to or greater than 9; and transmit a Multiple-Input-Multiple-Output (MIMO) transmission over a plurality of spatial streams, the MIMO transmission including at least one field transmitted over a spatial stream having a stream number equal to or greater than 9, the field is based on a complementary Golay sequence pair of the plurality of complementary Golay sequence pairs, which is based on a weight vector corresponding to the stream number.
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45.
公开(公告)号:US20170265217A1
公开(公告)日:2017-09-14
申请号:US15278978
申请日:2016-09-28
Applicant: INTEL CORPORATION
Inventor: Artyom Lomayev , Alexander Maltsev , Michael Genossar , Carlos Cordeiro
CPC classification number: H04W72/1263 , H04B7/04 , H04B7/0413 , H04B7/0697 , H04L5/0023 , H04L5/0048 , H04L5/005 , H04L27/2601
Abstract: For example, a wireless station may be configured to map a plurality of data symbols to Orthogonal Frequency-Division Multiplexing (OFDM) symbols in a plurality of spatial streams, to may map a plurality of pilot sequences to the OFDM symbols according to a pilot mapping scheme, and to transmit a Multi-In-Multi-Out (MIMO) transmission based on the plurality of spatial streams.
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46.
公开(公告)号:US20170264351A1
公开(公告)日:2017-09-14
申请号:US15278928
申请日:2016-09-28
Applicant: INTEL CORPORATION
Inventor: Artyom Lomayev , Alexander Maltsev , Michael Genossar , Carlos Cordeiro
Abstract: For example, a wireless station may be configured to modulate a plurality of data bit sequences into a plurality of data blocks according to a dual carrier modulation, to map the plurality of data blocks to a plurality of spatial streams according to a space-time diversity scheme, and to transmit a MIMO transmission based on the plurality of spatial streams.
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公开(公告)号:US09722650B2
公开(公告)日:2017-08-01
申请号:US14570442
申请日:2014-12-15
Applicant: INTEL CORPORATION
Inventor: Vladimir Kravtsov , Yaakov Ben-Bassat , Michael Genossar
IPC: H04L12/50 , H04B1/10 , H04W24/08 , H04B17/345 , H04B17/336
CPC classification number: H04B1/1027 , H04B17/336 , H04B17/345 , H04W24/08
Abstract: Described herein are technologies related to an implementation of noise power estimation in a receiver of a device.
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公开(公告)号:US11955732B2
公开(公告)日:2024-04-09
申请号:US18089220
申请日:2022-12-27
Applicant: Intel Corporation
Inventor: Erkan Alpman , Arnaud Lucres Amadjikpe , Omer Asaf , Kameran Azadet , Rotem Banin , Miroslav Baryakh , Anat Bazov , Stefano Brenna , Bryan K. Casper , Anandaroop Chakrabarti , Gregory Chance , Debabani Choudhury , Emanuel Cohen , Claudio Da Silva , Sidharth Dalmia , Saeid Daneshgar Asl , Kaushik Dasgupta , Kunal Datta , Brandon Davis , Ofir Degani , Amr M. Fahim , Amit Freiman , Michael Genossar , Eran Gerson , Eyal Goldberger , Eshel Gordon , Meir Gordon , Josef Hagn , Shinwon Kang , Te Yu Kao , Noam Kogan , Mikko S. Komulainen , Igal Yehuda Kushnir , Saku Lahti , Mikko M. Lampinen , Naftali Landsberg , Wook Bong Lee , Run Levinger , Albert Molina , Resti Montoya Moreno , Tawfiq Musah , Nathan G. Narevsky , Hosein Nikopour , Oner Orhan , Georgios Palaskas , Stefano Pellerano , Ron Pongratz , Ashoke Ravi , Shmuel Ravid , Peter Andrew Sagazio , Eren Sasoglu , Lior Shakedd , Gadi Shor , Baljit Singh , Menashe Soffer , Ra'anan Sover , Shilpa Talwar , Nebil Tanzi , Moshe Teplitsky , Chintan S. Thakkar , Jayprakash Thakur , Avi Tsarfati , Yossi Tsfati , Marian Verhelst , Nir Weisman , Shuhei Yamada , Ana M. Yepes , Duncan Kitchin
IPC: H01Q9/04 , H01Q1/24 , H01Q1/38 , H01Q1/48 , H01Q3/24 , H01Q5/47 , H01Q21/24 , H03L7/14 , H04B1/3827 , H04B7/0456 , H04B7/06 , H04B15/04
CPC classification number: H01Q9/0414 , H01Q1/243 , H01Q1/38 , H01Q1/48 , H01Q3/24 , H01Q5/47 , H01Q21/24 , H03L7/145 , H04B1/3827 , H04B7/0482 , H04B7/0639 , H04B15/04
Abstract: Millimeter wave (mmWave) technology, apparatuses, and methods that relate to transceivers, receivers, and antenna structures for wireless communications are described. The various aspects include co-located millimeter wave (mmWave) and near-field communication (NFC) antennas, scalable phased array radio transceiver architecture (SPARTA), phased array distributed communication system with MIMO support and phase noise synchronization over a single coax cable, communicating RF signals over cable (RFoC) in a distributed phased array communication system, clock noise leakage reduction, IF-to-RF companion chip for backwards and forwards compatibility and modularity, on-package matching networks, 5G scalable receiver (Rx) architecture, among others.
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公开(公告)号:US20230224080A1
公开(公告)日:2023-07-13
申请号:US18174626
申请日:2023-02-26
Applicant: INTEL CORPORATION
Inventor: Artyom Lomayev , Alexander Maltsev , Michael Genossar , Claudio Da Silva , Carlos Cordeiro
CPC classification number: H04L1/0681 , H04L25/0242 , H04L1/0625 , H04L25/0204 , H04L5/0007
Abstract: Some demonstrative embodiments include apparatuses, devices, systems and methods of communicating an Enhanced Directional Multi-Gigabit (DMG) (EDMG) Physical Layer Protocol Data Unit (PPDU). For example, an EDMG wireless communication station (STA) may be configured to communicate an EDMG PPDU including a Channel Estimation Field (CEF) and/or a pilot sequence, which may be configured for an OFDM mode.
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50.
公开(公告)号:US11546026B2
公开(公告)日:2023-01-03
申请号:US16753343
申请日:2018-09-27
Applicant: INTEL CORPORATION
Inventor: Artyom Lomayev , Claudio Da Silva , Michael Genossar , Alexander Maltsev , Carlos Cordeiro
IPC: H04B7/0456 , H04B7/06 , H04L1/00 , H04L5/00 , H03M13/11
Abstract: For example, an EDMG STA may generate an LDPC coded bit stream for a user based on data bits for the user in an EDMG PPDU, the LDPC coded bit stream for the user including a concatenation of a plurality of LDPC codewords, a count of the plurality of LDPC codewords is based at least on a codeword length for the user and on a code rate for the user; generate encoded and padded bits for the user by concatenating the LDPC coded bit stream with a plurality of coded pad zero bits, a count of the coded pad zero bits is based at least on a count of one or more spatial streams for the user and on the count of the plurality of LDPC codewords for the user; and distribute the encoded and padded bits for the user to the one or more spatial streams for the user.
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