IP Library › Granted Patent US 9,900,202
Granted Patent B2
US 9,900,202 · App. 15/680,383 · Granted Feb 20, 2018

Transmission method, transmitter apparatus, reception method and receiver apparatus

Inventors: Yutaka Murakami (Kanagawa, JP); Tomohiro Kimura (Osaka, JP); Mikihiro Ouchi (Osaka, JP)
Assignee: SUN PATENT TRUST
H04L27/265H04B7/0456H04L1/005H04L1/0061H04L1/0071H04L27/2602
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Quick Facts
Patent No.
US 9,900,202
App. No.
15/680,383
Granted
Feb 20, 2018
Kind
B2
Abstract

Transmission quality is improved in an environment in which direct waves dominate in a transmission method for transmitting a plurality of modulated signals from a plurality of antennas at the same time. All data symbols used in data transmission of a modulated signal are precoded by hopping between precoding matrices so that the precoding matrix used to precode each data symbol and the precoding matrices used to precode data symbols that are adjacent to the data symbol in the frequency domain and the time domain all differ. A modulated signal with such data symbols arranged therein is transmitted.

Claims (27)

1. A reception method comprising:

receiving a multiplexed signal, and performing frequency transform on the received multiplexed signal to generate a baseband signal, the multiplexed signal being generated by multiplexing a first OFDM (Orthogonal Frequency-Division Multiplexing) signal generated using an OFDM scheme and a second OFDM signal generated using the OFDM scheme, the first OFDM signal including a first phase-shifted symbol sequence, the second OFDM signal including a second phase-shifted symbol sequence, the first OFDM signal and the second OFDM signal each being transmitted from a different transmission branch;

decoding the baseband signal to generate a video signal;

decoding the baseband signal to generate an audio signal;

displaying the video signal on a video display unit; and

outputting the audio signal from an audio output unit, wherein

the first phase-shifted symbol sequence and the second phase-shifted symbol sequence are each generated using a phase shift coefficient that is regularly switched between a plurality of phase shift coefficients,

the first phase-shifted symbol sequence includes a first subcarrier signal and a second subcarrier signal,

the second phase-shifted symbol sequence includes a third subcarrier signal and a fourth subcarrier signal,

the first subcarrier signal and the third subcarrier signal are transmitted at a first frequency,

the second subcarrier signal and the fourth subcarrier signal are transmitted at a second frequency adjacent to the first frequency in a frequency domain, and

in the case where the second subcarrier signal is a data signal,

the first subcarrier signal and the third subcarrier signal are generated by using a first phase shift coefficient among the plurality of phase shift coefficients, and

the second subcarrier signal and the fourth subcarrier signal are generated by using a second phase shift coefficient among the plurality of phase shift coefficients that is different from the first phase shift coefficient.

2. A reception device comprising:

a tuner receiving a multiplexed signal, and performing frequency transform on the received multiplexed signal to generate a baseband signal, the multiplexed signal being generated by multiplexing a first OFDM (Orthogonal Frequency-Division Multiplexing) signal generated using an OFDM scheme and a second OFDM signal generated using the OFDM scheme, the first OFDM signal including a first phase-shifted symbol sequence, the second OFDM signal including a second phase-shifted symbol sequence, the first OFDM signal and the second OFDM signal each being transmitted from a different transmission branch;

a decoder decoding the baseband signal to generate a video signal and an audio signal;

a video display unit displaying the video signal; and

an audio output unit outputting the audio signal, wherein

the first phase-shifted symbol sequence and the second phase-shifted symbol sequence are each generated by using a phase shift coefficient that is regularly switched between a plurality of phase shift coefficients,

the first phase-shifted symbol sequence includes a first subcarrier signal and a second subcarrier signal,

the second phase-shifted symbol sequence includes a third subcarrier signal and a fourth subcarrier signal,

the first subcarrier signal and the third subcarrier signal are transmitted at a first frequency,

the second subcarrier signal and the fourth subcarrier signal are transmitted at a second frequency adjacent to the first frequency in a frequency domain, and

in the case where the second subcarrier signal is a data signal,

the first subcarrier signal and the third subcarrier signal are generated by using a first phase shift coefficient among the plurality of phase shift coefficients, and

the second subcarrier signal and the fourth subcarrier signal are generated by using a second phase shift coefficient among the plurality of phase shift coefficients that is different from the first phase shift coefficient.

Priority Claims (2)
JP 2010-203710 · Sep 10, 2010 · national
JP 2010-252335 · Nov 10, 2010 · national
Continuity (10)
Continuation 15496230 · Apr 25, 2017
Continuation 15362074 · Nov 28, 2016
Continuation 15207744 · Jul 12, 2016
Continuation 15044432 · Feb 16, 2016
Continuation 14876866 · Oct 7, 2015
Continuation 14697882 · Apr 28, 2015
Continuation 14576317 · Dec 19, 2014
Continuation 14469769 · Aug 27, 2014
Continuation 13809830
Related Publication 20170373896A1 · Dec 28, 2017