Patents by Inventor Shinsuke Ibi

Shinsuke Ibi 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).

  • Publication number: 20160021663
    Abstract: According to one aspect of the present invention, there is provided a wireless communication device that transmits a first wireless signal representing a bit sequence to a reception device, in which the first wireless signal is transmitted concurrently with a second wireless signal representing the bit sequence described above, and in which between the first wireless signal and the second wireless signal, components with a prescribed ratio are mapped to a different frequency or to a different time between the first wireless signal and the second wireless signal and remaining components are mapped to the same frequency and to the same time between the first wireless signal and the second wireless signal.
    Type: Application
    Filed: March 4, 2014
    Publication date: January 21, 2016
    Applicants: OSAKA UNIVERSITY, SHARP KABUSHIKI KAISHA
    Inventors: Hiroki TAKAHASHI, Jungo GOTO, Osamu NAKAMURA, Kazunari YOKOMAKURA, Yasuhiro HAMAGUCHI, Seiichi SAMPEI, Shinichi MIYAMOTO, Shinsuke IBI
  • Publication number: 20160013952
    Abstract: A reception unit for receiving a signal representing a bit sequence, a channel estimation unit for estimating channel variation that the received signal undergoes and calculating a channel estimation value representing the channel variation, and a demodulation unit for demodulating the signal by using the channel estimation value and restoring each bit included in the bit sequence represented by the received signal are included, and the demodulation unit performs demodulation of the received signal by using a value indicating magnitude of error included in the channel estimation value.
    Type: Application
    Filed: February 19, 2014
    Publication date: January 14, 2016
    Applicants: OSAKA UNIVERSITY, SHARP KABUSHIKI KAISHA
    Inventors: Osamu NAKAMURA, Hiroki TAKAHASHI, Jungo GOTO, Kazunari YOKOMAKURA, Yasuhiro HAMAGUCHI, Shinsuke IBI, Seiichi SAMPEI, Shinichi MIYAMOTO
  • Patent number: 9191080
    Abstract: A reception device comprises a reception unit for receiving signals transmitted by assigning respectively a plurality of different frequency signal groups, which are generated based on a same bit sequence, to a plurality of layers, an MIMO separation unit for executing MIMO separation of the signals, received by the reception unit, into the frequency signal groups corresponding respectively to the plural layers, and a merging unit for merging individual items of information based on the frequency signal groups obtained by the MIMO separation, the items of information corresponding respectively to the plural layers.
    Type: Grant
    Filed: February 24, 2012
    Date of Patent: November 17, 2015
    Assignees: SHARP KABUSHIKI KAISHA, OSAKA UNIVERSITY
    Inventors: Kazunari Yokomakura, Osamu Nakamura, Jungo Goto, Yasuhiro Hamaguchi, Hiroki Takahashi, Seiichi Sampei, Shinsuke Ibi, Shinichi Miyamoto
  • Publication number: 20150244496
    Abstract: A bit coding device that creates a coded bit sequence by performing error correction coding on an input bit sequence that is input, includes a coding unit that creates a first bit sequence by performing the error correction coding on the input bit sequence, an extraction unit that extracts a second bit sequence from the first bit sequence, and an information compression unit that creates a third bit sequence by performing lossy compression on the second bit sequence, in which coded bits include at least a portion of the third bit sequence.
    Type: Application
    Filed: August 13, 2013
    Publication date: August 27, 2015
    Applicants: OSAKA UNIVERSITY, Sharp Kabushiki Kaisha
    Inventors: Jungo Goto, Hiroki Takahashi, Osamu Nakamura, Kazunari Yokomakura, Yasuhiro Hamaguchi, Shinsuke Ibi, Seiichi Sampei, Shinichi Miyamoto
  • Publication number: 20150208412
    Abstract: A wireless communication system includes a first communication device and a second communication device, in which the first communication device includes a cyclostationarity assignment unit that establishes a correlation between signals on two subcarriers that are a predetermined interval away from each other, the two subcarriers including at least one subcarrier on which a data signal to be transmitted to the second communication device is arranged, and the second communication device includes a frequency interval determination unit that determines the predetermined frequency interval according to information that has to be notified to a different device by the first communication device. Thus, a communication system is provided that is capable of suppressing a decrease in frame efficiency when assigning cyclostationarity.
    Type: Application
    Filed: August 13, 2013
    Publication date: July 23, 2015
    Applicants: OSAKA UNIVERSITY, SHARP KABUSHIKI KAISHA
    Inventors: Osamu Nakamura, Hiroki Takahashi, Jungo Goto, Kazunari Yokomakura, Yasuhiro Hamaguchi, Seiichi Sampei, Shinsuke Ibi, Shinichi Miyamoto
  • Patent number: 8995540
    Abstract: To provide a system that can accommodate a greater number of terminals within a limited band and can obtain a higher transmission rate. While the number of frequency signals (spectrums) output in parallel by performing a spread spectrum from the DFT unit of each terminal is 12, the number of sub-carriers constituting one sub-channel is set at 10 or 11. In this case, the users (users A and G) allocated to the sub-channels at both ends of the band will not perform transmission of one frequency signal at the end (one sub-carrier) of all the frequency signals output from the DFT unit, whereas the users (users B to F) allocated to the other sub-channels will not perform transmission of the frequency signals at the ends (two sub-carriers). This transmission can be realized by deleting (clipping) the associated number of signals from both ends or from one end of the frequency signals output from the DFT unit of each terminal and allocating the frequency signals after clipping, to individual sub-channels.
    Type: Grant
    Filed: April 22, 2009
    Date of Patent: March 31, 2015
    Assignee: Sharp Kabushiki Kaisha
    Inventors: Shimpei To, Minoru Kubota, Yasuhiro Hamaguchi, Osamu Nakamura, Kazunari Yokomakura, Seiichi Sampei, Shinichi Miyamoto, Shinsuke Ibi
  • Patent number: 8887029
    Abstract: A communication device includes a turbo encoding section including a plurality of component encoders, wherein the plurality of component encoders within the turbo encoding section use different constraint lengths.
    Type: Grant
    Filed: February 22, 2011
    Date of Patent: November 11, 2014
    Assignees: Sharp Kabushiki Kaisha, Osaka University
    Inventors: Jungo Goto, Yasuhiro Hamaguchi, Kazunari Yokomakura, Osamu Nakamura, Hiroki Takahashi, Shinsuke Ibi, Seiichi Sampei, Shinichi Miyamoto
  • Patent number: 8787243
    Abstract: A wireless communication system includes: a multiple number of mobile station apparatuses that transmit code bits obtained by applying error-correction coding to information bits; a relay station apparatus that receives code bits from the multiple mobile station apparatuses, applies network coding on the code bits and transmits the network-code bits; and a base station apparatus that receives and decodes the code bits and the network-code bits, wherein the base station apparatus, when decoding the received code bits, performs iteration decoding by regarding the received code bits as a serially concatenated code of network coding and error correction coding. Accordingly, decoding is performed by regarding the network code and the error correction code as a serial concatenated code, it is possible to obtain diversity with a simple configuration.
    Type: Grant
    Filed: August 30, 2010
    Date of Patent: July 22, 2014
    Assignees: Sharp Kabushiki Kaisha, Osaka University
    Inventors: Kazunari Yokomakura, Yasuhiro Hamaguchi, Hiroki Takahashi, Jungo Goto, Osamu Nakamura, Shinsuke Ibi, Seiichi Sampei, Shinichi Miyamoto
  • Publication number: 20140185594
    Abstract: A communication device comprising a transmission unit and a reception unit. The transmission unit is configured to transmit, to a first communication device, first information indicating a first set of subcarriers comprising of a plurality of subcarriers, and to a second communication device, second information indicating a second set of subcarriers comprising of a plurality of subcarriers. The reception unit is configured to receive a first Discrete Fourier Transform-spread-OFDM (DFT-S-OFDM) signal from the first communication device using the first information and a second Discrete Fourier Transform-spread-OFDM (DFT-S-OFDM) signal from the second communication device using the second information. Also, in the communication device, a portion of the second set of subcarriers can overlap with at least a portion of the first set of subcarriers in a time frame of a plurality of time frames.
    Type: Application
    Filed: March 6, 2014
    Publication date: July 3, 2014
    Applicant: SHARP KABUSHIKI KAISHA
    Inventors: Kazunari YOKOMAKURA, Yasuhiro HAMAGUCHI, Shimpei TO, Minoru KUBOTA, Hideo NAMBA, Seiichi SAMPEI, Shinichi MIYAMOTO, Shinsuke IBI
  • Patent number: 8718151
    Abstract: A transmission method according to the present invention has been conceived assuming an environment where two information source nodes independently communicate with one destination node, and thus is applicable to such a simple topology. The transmission method provides an inter-node cooperation relationship which provides a sufficient advantageous effect even in an environment in which there is a difference in the power levels of the received signals that reach the address node via two routes. The transmission method is performed by a node U1 (40) and a node U2 that is located closer to the node D (60) than the node U1 (40) to transmit signals to a node D (60) which iteratively detects a log likelihood ratio between mutually corresponding pairs of bits included in the signals at constellation points.
    Type: Grant
    Filed: February 23, 2010
    Date of Patent: May 6, 2014
    Assignee: Osaka University
    Inventors: Shinsuke Ibi, Seiichi Sampei
  • Patent number: 8719679
    Abstract: To improve performance of a decoder even in a system with the coder configuration determined by inserting a doping bit sequence known between a transmission apparatus and a reception apparatus in an information bit sequence to transmit, the transmission apparatus is a transmission apparatus that transmits radio signals to the reception apparatus, and is provided with a doping section 23 that inserts a doping bit sequence which is known between the transmission apparatus and the reception apparatus in an information bit sequence to transmit to the reception apparatus, coding sections 11a, 11b that perform error-correcting coding on a bit sequence with the doping bit sequence inserted therein, a puncturing section that performs puncturing on a bit sequence subjected to the error-correcting coding, and a wireless transmission section 24 that transmits a bit sequence subjected to the puncturing.
    Type: Grant
    Filed: March 3, 2010
    Date of Patent: May 6, 2014
    Assignees: Sharp Kabushiki Kaisha, Osaka University
    Inventors: Osamu Nakamura, Yasuhiro Hamaguchi, Kazunari Yokomakura, Jungo Goto, Hiroki Takahashi, Shinsuke Ibi, Seiichi Sampei, Shinichi Miyamoto
  • Patent number: 8699319
    Abstract: A base station device may include, but is not limited to: a mapping unit; and at least one reception antenna. The mapping unit is configured to assign a plurality of first subcarriers to a first communication device, and assign a part of the plurality of first subcarriers to at least one other communication device. The at least one reception antenna is configured to receive from one of the first communication device and the at least one other communication device, a plurality of frequency signals allocated to the plurality of first subcarriers. Each of the plurality of frequency signals is converted from coded transmission data of the one of the first communication device and the at least one other communication device.
    Type: Grant
    Filed: August 13, 2008
    Date of Patent: April 15, 2014
    Assignee: Sharp Kabushiki Kaisha
    Inventors: Kazunari Yokomakura, Yasuhiro Hamaguchi, Shimpei To, Minoru Kubota, Hideo Namba, Seiichi Sampei, Shinichi Miyamoto, Shinsuke Ibi
  • Publication number: 20130329830
    Abstract: A reception device comprises a reception unit for receiving signals transmitted by assigning respectively a plurality of different frequency signal groups, which are generated based on a same bit sequence, to a plurality of layers, an MIMO separation unit for executing MIMO separation of the signals, received by the reception unit, into the frequency signal groups corresponding respectively to the plural layers, and a merging unit for merging individual items of information based on the frequency signal groups obtained by the MIMO separation, the items of information corresponding respectively to the plural layers.
    Type: Application
    Filed: February 24, 2012
    Publication date: December 12, 2013
    Applicants: OSAKA UNIVERSITY, SHARP KABUSHIKI KAISHA
    Inventors: Kazunari Yokomakura, Osamu Nakamura, Jungo Goto, Yasuhiro Hamaguchi, Hiroki Takahashi, Seiichi Sampei, Shinsuke Ibi, Shinichi Miyamoto
  • Patent number: 8594224
    Abstract: The DFT 12 converts a modulated digital signal into a spectrum of a frequency band. A use frequency band notification unit in a reception device notifies a transmission device 1 of a use frequency band. A deletion unit 141 in the transmission device 1 deletes a spectrum of a band other than the use frequency band after shaping of a spectrum waveform based on the water filling principal by a shaping unit 13. Then, a digital signal for each data series concerning the spectrum obtained after deletion by the deletion unit 141 is synthesized by a synthesizing unit 16 and sent from the transmission device 1 to the reception device. A reception side conversion unit in the reception device converts the digital signal sent by the transmission unit into a spectrum of a frequency band. A turbo equalization unit performs turbo equalization on the converted spectrum.
    Type: Grant
    Filed: January 31, 2008
    Date of Patent: November 26, 2013
    Assignee: Osaka University
    Inventors: Shinsuke Ibi, Seiichi Sampei
  • Patent number: 8503502
    Abstract: A clipping rate is controlled in spectrum shaping according to a propagation path to thereby improve transmission characteristics and perform communication at a stable transmission rate. Propagation path characteristics are detected by a propagation path information detection unit 5 for detecting propagation path information fed back from a base station device and a water filling principle for distributing energy by a primary spectrum shaping unit 6 according to the propagation path characteristics is applied to transmission spectrum obtained by a DFT unit 4. Clipping information in secondary spectrum shaping fed back from the base station device is detected by a clipping information detection unit 7 to perform the secondary spectrum shaping by a secondary spectrum shaping unit 8. At this time, with the clipping rate by the secondary spectrum shaping unit 8, clipping rates of all transmission devices multiplexed in a scheduling unit 26 of the base station device are controlled adaptively.
    Type: Grant
    Filed: April 22, 2009
    Date of Patent: August 6, 2013
    Assignee: Sharp Kabushiki Kaisha
    Inventors: Shinsuke Ibi, Seiichi Sampei, Shinichi Miyamoto, Kazunari Yokomakura, Minoru Kubota, Yasuhiro Hamaguchi, Shimpei To, Osamu Nakamura
  • Publication number: 20120324308
    Abstract: A communication device includes a turbo encoding section including a plurality of component encoders, wherein the plurality of component encoders within the turbo encoding section use different constraint lengths.
    Type: Application
    Filed: February 22, 2011
    Publication date: December 20, 2012
    Inventors: Jungo Goto, Yasuhiro Hamaguchi, Kazunari Yokomakura, Osamu Nakamura, Hiroki Takahashi, Shinsuke Ibi, Seiichi Sampei, Shinichi Miyamoto
  • Publication number: 20120155373
    Abstract: A wireless communication system includes: a multiple number of mobile station apparatuses that transmit code bits obtained by applying error-correction coding to information bits; a relay station apparatus that receives code bits from the multiple mobile station apparatuses, applies network coding on the code bits and transmits the network-code bits; and a base station apparatus that receives and decodes the code bits and the network-code bits, wherein the base station apparatus, when decoding the received code bits, performs iteration decoding by regarding the received code bits as a serially concatenated code of network coding and error correction coding. Accordingly, decoding is performed by regarding the network code and the error correction code as a serial concatenated code, it is possible to obtain diversity with a simple configuration.
    Type: Application
    Filed: August 30, 2010
    Publication date: June 21, 2012
    Inventors: Kazunari Yokomakura, Yasuhiro Hamaguchi, Hiroki Takahashi, Jungo Goto, Osamu Nakamura, Shinsuke Ibi, Seiichi Sampei, Shinich Miyamoto
  • Publication number: 20120096336
    Abstract: To improve performance of a decoder even in a system with the coder configuration determined by inserting a doping bit sequence known between a transmission apparatus and a reception apparatus in an information bit sequence to transmit, the transmission apparatus is a transmission apparatus that transmits radio signals to the reception apparatus, and is provided with a doping section 23 that inserts a doping bit sequence which is known between the transmission apparatus and the reception apparatus in an information bit sequence to transmit to the reception apparatus, coding sections 11a, 11b that performerror-correcting coding on a bit sequence with the doping bit sequence inserted therein, a puncturing section that performs puncturing on a bit sequence subjected to the error-correcting coding, and a wireless transmission section 24 that transmits a bit sequence subjected to the puncturing.
    Type: Application
    Filed: March 3, 2010
    Publication date: April 19, 2012
    Inventors: Osamu Nakamura, Yasuhiro Hamaguchi, Kazunari Yokomakura, Jungo Goto, Hiroki Takahashi, Shinsuke Ibi, Seiichi Sampei, Shinichi Miyamoto
  • Publication number: 20120057543
    Abstract: Based on a data signal and a known reference signal, a frequency response of a channel is predicted, and the state of the channel over the entire transmission band is predicted such that frequency allocation is performed in a short period of time. A reception apparatus that receives a signal from a transmission apparatus which distributedly arranges signals in a frequency domain into a plurality of frequencies and which performs wireless transmission, the reception apparatus including: a channel property prediction unit (57) that predicts a channel property over an entire transmission band based on the distributedly arranged channel estimation reference signal; an allocation frequency determination unit (58) that determines the plurality of frequencies in which the signals in the frequency domain are distributedly arranged; and a frequency allocation information generation unit (59) that generates frequency allocation information indicating the determined plurality of frequencies.
    Type: Application
    Filed: March 3, 2010
    Publication date: March 8, 2012
    Applicants: OSAKA UNIVERSITY, SHARP KABUSHIKI KAISHA
    Inventors: Kazunari Yokomura, Yasuhiro Hamaguchi, Osamu Nakamura, Jungo Goto, Hiroki Takahashi, Shinsuke Ibi, Seiichi Sampei, Shinichi Miyamoto
  • Publication number: 20110320920
    Abstract: By controlling to select encoding appropriately considering characteristics of equalization and decoding of a receiving apparatus employing a turbo equalization technology, it is possible to attain a high transmission characteristic. Information bits of two systems including a sequence which is input to a first RSC encoding unit 22 and a sequence which is input through an interleaving unit 21 to a second RSC encoding unit 23 are set for input information bits, and each of which is subjected to RSC encoding. Each encoded parity bit is input to a puncturing unit 24. Since a systematic bit obtained by the first RSC encoding unit 22 is the information bit itself, a systematic bit obtained by the second RSC encoding unit 23 is not transmitted. In the puncturing unit 24, while puncturing is applied according to a predetermined coding rate, selection of either an RSC code or a turbo code is carried out by a puncturing control unit 25.
    Type: Application
    Filed: March 5, 2010
    Publication date: December 29, 2011
    Applicant: SHARP KABUSHIKI KAISHA
    Inventors: Seiichi Sampei, Shinsuke Ibi, Shinichi Miyamoto, Kazunari Yokomakura, Yasuhiro Hamaguchi, Osamu Nakamura, Takashi Yoshimoto, Ryota Yamada