IP Library Granted Patent US 10,439,689
Granted Patent B2
US 10,439,689 · App. 16/164,265 · Granted Oct 8, 2019

Transmission apparatus and transmission method

Inventors: Yutaka Murakami (Kanagawa, JP); Tomohiro Kimura (Osaka, JP); Mikihiro Ouchi (Osaka, JP)
Assignee: Panasonic Intellectual Property Corporation of America
H04B7/0456H04B7/0413H04B7/0452H04B7/0628H04B7/0671
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Quick Facts
Patent No.
US 10,439,689
App. No.
16/164,265
Granted
Oct 8, 2019
Kind
B2
Abstract

Provided are M signal processors that respectively generate modulated signals for M reception apparatuses (where M is an integer equal to 2 or greater), a multiplexing signal processor, and N antenna sections (where N is an integer equal to 1 or greater). When transmitting multiple streams, each of the M signal processors generates two mapped signals, generates first and second precoded signals by precoding the two mapped signals, periodically changes the phase of signal points in the IQ plane with respect to the second precoded signal, outputs the phase-changed signal, and outputs the first precoded signal and the phase-changed second precoded signal as two modulated signals. When transmitting a single stream, each of the M signal processor outputs a single modulated signal. The multiplexing signal processor multiplexes the modulated signals output from the M signal processors, and generates N multiplexed signals. The N antenna sections respectively transmit the N multiplexed signals.

Claims (29)

1. A transmission apparatus comprising:

M signal processors that respectively generate modulated signals with respect to M reception apparatuses (where M is an integer equal to 2 or greater),

wherein each of the M signal processors includes

a precoder that, in a case of transmitting multiple streams to a corresponding reception apparatus, generates two mapped signals to be transmitted to the corresponding reception apparatus, and generates a first precoded signal and a second precoded signal by precoding the two mapped signals, and

a phase changer that periodically changes a phase of signal points in an IQ plane with respect to the second precoded signal, and outputs a phase-changed signal,

each of the M signal processors outputs the first precoded signal and the phase-changed second precoded signal as two modulated signals, and

each of the M signal processors outputs a single modulated signal in a case of transmitting a single stream to the corresponding reception apparatus;

a multiplexing signal processor that generates N multiplexed signals (where N is an integer equal to 1 or greater) by multiplexing the modulated signals output from each of the M signal processors; and

N antennas, each including at least one antenna element, that respectively transmit the N multiplexed signals.

2. The transmission apparatus according to claim 1 , wherein

the phase changer periodically changes the phase of the second precoded signal by a fixed amount.

3. The transmission apparatus according to claim 1 , wherein

the precoder generates the first precoded signal and the second precoded signal by executing weight combination in two mapped signals.

4. The transmission apparatus according to claim 1 , further comprising:

a receiver that receives information related to a reception capability of each reception apparatus from each of the M reception apparatuses.

5. The transmission apparatus according to claim 4 , wherein

the phase changer decides whether or not to execute the phase change process based on the information related to the reception capability of the reception apparatus.

6. The transmission apparatus according to claim 1 , wherein

each of the multiplexed signals is transmitted using a multi-carrier communication scheme.

7. The transmission apparatus according to claim 1 , wherein

each of the multiplexed signals is transmitted using a single-carrier communication scheme.

8. A transmission method comprising:

in a case of transmitting multiple streams to a corresponding reception apparatus, generating, by each of M signal processors (where M is an integer equal to 2 or greater), two mapped signals to be transmitted to the corresponding reception apparatus, and generating, by each of the M signal processors, a first precoded signal and a second precoded signal by precoding the two mapped signals;

periodically changing, by each of the M signal porcessors, a phase of signal points in an IQ plane with respect to the seconded precoded signal;

generating, by each of the M signal processors, a phase-changed second precoded signal;

outputting, by each of the M signal processors, the first precoded signal and the phase-changed second precoded signal as two modulated signals;

in a case of transmitting a single stream to the corresponding reception apparatus, outputting, by each of the M signal processors, a single modulated signal;

generating, by a multiplexing signal processor, N multiplexed signals (where N is an integer equal to 1 or greater) by multiplexing the modulated signal output from each of the M signal processors; and

transmitting, by N antennas, the N multiplexed signals.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 15, 2019
From: MURAKAMI, YUTAKA; KIMURA, TOMOHIRO; OUCHI, MIKIHIRO
To: PANASONIC INTELLECTUAL PROPERTY CORPORATION OF AMERICA
Reel/Frame 048017/0299 →
Priority Claims (5)
JP 2016-112055 · Jun 3, 2016 · national
JP 2016-140323 · Jul 15, 2016 · national
JP 2016-202979 · Oct 14, 2016 · national
JP 2016-215395 · Nov 2, 2016 · national
JP 2017-091411 · May 1, 2017 · national
Continuity (2)
Continuation PCTJP2017018770 · May 19, 2017
Related Publication 20190052323A1 · Feb 14, 2019