IP Library › Granted Patent US 9,847,822
Granted Patent B2
US 9,847,822 · App. 15/361,691 · Granted Dec 19, 2017

Signal generating method and signal generating device

Inventors: Yutaka Murakami (Kanagawa, JP); Tomohiro Kimura (Osaka, JP); Mikihiro Ouchi (Osaka, JP)
Assignee: SUN PATENT TRUST
H04B7/0602H04B1/0096H04B7/0413H04B7/0456H04B7/0682H04B17/0085H04B17/12H04L12/189H04L27/36H04L27/38H04L65/4076H04W52/225H04J11/0033
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Quick Facts
Patent No.
US 9,847,822
App. No.
15/361,691
Granted
Dec 19, 2017
Kind
B2
Abstract

A transmission method of simultaneously transmitting a first modulated signal and a second modulated signal at a common frequency performs precoding on both signals using a fixed precoding matrix and regularly changes the phase of at least one of the signals. One of signal generation processing in which phase change is performed and signal generation processing in which phase change is not performed is selectable, thereby improving general versatility in signal generation.

Claims (23)

1. A transmission apparatus comprising:

branching circuitry which, in operation, branches pieces of encoded data into first to M-th data sequences, where M is an integer 1 or greater;

mapping circuitry which, in operation, modulates the first to M-th data sequences into first to M-th modulated symbol sequences by using a determined modulation scheme;

precoding circuity which, in operation:

selectively performs first processing or second processing, the first processing being processing of outputting the first modulated symbol sequence as a first precoded symbol sequence, where M is 1, the second processing being processing of generating first to M-th precoded symbol sequences by using a determined precoding matrix, where M is 2 or greater; and

transmission circuitry which, in operation, transmits a first transmission symbol sequence containing the first modulated symbol sequence from one or more antennas, or transmits first to M-th transmission symbol sequences containing the respective first to M-th precoded symbol sequences from first to M-th antennas, respectively at a same frequency range and at a same transmission time, wherein

(i) when the precoding circuity performs the second processing,

the branching circuitry outputs the first data sequence and the second data sequence containing different ones of the pieces of encoded data,

the mapping circuitry modulates the first data sequence and the second data sequence into the first modulated symbol sequence and the second modulated symbol sequence by using the determined modulation scheme,

the precoding circuitry generates the first precoded symbol sequence and the second precoded symbol sequence by using, as the determined precoding matrix, a precoding matrix for performing phase change in which a phase comes full circle in a determined number of symbols, on at least one of the first modulated symbol sequence and the second modulated symbol sequence, and

(ii) when the precoding circuity performs the first processing,

the branching circuitry outputs the first data sequence containing all the pieces of encoded data, and

the mapping circuitry modulates the first data sequence into the first modulated symbol sequence by using the determined modulation scheme.

2. A transmission method comprising:

branching pieces of encoded data into first to M-th data sequences, where M is an integer 1 or greater;

modulating the first to M-th data sequences into first to M-th modulated symbol sequences by using a determined modulation scheme;

selectively performing first processing or second processing, the first processing being processing of outputting the first modulated symbol sequence as a first precoded symbol sequence, where M is 1, the second processing being processing of generating first to M-th precoded symbol sequences by using a determined precoding matrix, where M is 2 or greater; and

transmitting a first transmission symbol sequence containing the first modulated symbol sequence from one or more antennas, or transmitting first to M-th transmission symbol sequences containing the respective first to M-th precoded symbol sequences from first to M-th antennas, respectively at a same frequency range and at a same transmission time, wherein

(i) when the second processing is performed,

the first data sequence and the second data sequence are modulated into the first modulated symbol sequence and the second modulated symbol sequence by using the determined modulation scheme,

the first precoded symbol sequence and the second precoded symbol sequence are generated by using, as the determined precoding matrix, a precoding matrix for performing phase change in which a phase comes full circle in a determined number of symbols, on at least one of the first modulated symbol sequence and the second modulated symbol sequence, and

(ii) when the first processing is performed,

the first data sequence containing all the pieces of encoded data is modulated into the first modulated symbol sequence by using the determined modulation scheme.

Priority Claims (5)
JP 2011-093542 · Apr 19, 2011 · national
JP 2011-102102 · Apr 28, 2011 · national
JP 2011-118454 · May 26, 2011 · national
JP 2011-140748 · Jun 24, 2011 · national
JP 2011-192122 · Sep 2, 2011 · national
Continuity (3)
Continuation 15018195 · Feb 8, 2016
Continuation 14111070
Related Publication 20170078007A1 · Mar 16, 2017