IP Library Granted Patent US 11,057,084
Granted Patent B2
US 11,057,084 · App. 16/551,084 · Granted Jul 6, 2021

Communication apparatus and communication 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 11,057,084
App. No.
16/551,084
Granted
Jul 6, 2021
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 (39)

1. A communication apparatus comprising:

a receiver which, in operation, receives, from each of M terminal apparatuses (M is an integer equal to 2 or greater), capability information indicative of capabilities of a corresponding one of the M terminal apparatuses, the capability information including at least one main capability field and a plurality of dependent capability fields, each associated with one of the at least one main capability field, wherein the at least one main capability field includes a multi-stream capability field for indicating whether multi-stream is supported or not, and the plurality of dependent capability fields include a precoding field for indicating a precoding method that is supported by the corresponding terminal apparatus;

M signal processors which respectively correspond to the M terminal apparatuses, wherein each of the M signal processors, in operation, generates a transmission stream based on the at least one main capability field and the plurality of dependent capability fields in the received capability information for a corresponding terminal apparatus;

multiplexing circuitry which, in operation, performs spatial multiplexing on transmission streams output from the M signal processors and generates N multiplexed signal streams (N is an integer equal to 2 or greater); and

a transmitter which, in operation, transmits the N multiplexed signal streams, based on the multi-stream capability field in the received capability information for the corresponding terminal apparatus,

wherein each of the M signal processors includes:

error correction coding circuitry which, in operation, performs error correction coding on a data signal for the corresponding terminal apparatus to generate a coded data signal;

modulation mapping circuitry which, in operation, modulates the coded data signal to generate a symbol sequence; and

signal processing circuitry which, in operation, performs signal processing on the symbol sequence and generates the transmission stream,

wherein when the multi-stream capability field indicates that multi-stream is supported for the corresponding terminal apparatus, the signal processing circuitry generates two or more transmission streams, and when the multi-stream capability field indicates that multi-stream is not supported for the corresponding terminal apparatus, the signal processing circuitry generates one transmission stream, and

wherein when the precoding field indicates a precoding method, the signal processing circuitry generates the two or more transmission streams by using the indicated precoding method.

2. The communication apparatus according to claim 1 , wherein

the at least one main capability field includes an OFDM (Orthogonal Frequency Division Multiplexing) capability field for indicating whether an OFDM scheme is supported or not; and

when the OFDM capability field indicates that an OFDM scheme is supported for the corresponding terminal apparatus, one or more OFDM symbols are generated for the corresponding terminal apparatus by applying OFDM processing on the symbol sequence.

3. The communication apparatus according to claim 1 , wherein

the plurality of dependent capability fields include a Phase Hopping capability field for indicating whether Phase Hopping is supported or not; and

when the Phase Hopping capability field indicates that Phase Hopping is supported for the corresponding terminal apparatus, corresponding one of the M signal processors performs Phase Hopping to generate the transmission stream.

4. The communication apparatus according to claim 1 , wherein

the plurality of dependent capability fields include a Modulation Coding Scheme (MCS) capability field for indicating an MCS that is supported by the corresponding terminal apparatus; and

each of the M signal processors generates one or more transmission streams for each of the M terminal apparatuses using the MCS indicated by the MCS capability field.

5. A communication method comprising:

receiving, from each of M terminal apparatuses (M is an integer equal to 2 or greater), capability information indicative of capabilities of a corresponding one of the M terminal apparatuses, the capability information including at least one main capability field and a plurality of dependent capability fields, each associated with one of the at least one main capability field, wherein the at least one main capability field includes a multi-stream capability field for indicating whether multi-stream is supported or not, and the plurality of dependent capability fields include a precoding field for indicating a precoding method that is supported by the corresponding terminal apparatus;

generating a transmission stream, for each of the M terminal apparatuses, based on the at least one main capability field and the plurality of dependent capability fields in the received capability information for a corresponding terminal apparatus, wherein the generating of the transmission stream includes:

performing error correction coding on a data signal for the corresponding terminal apparatus to generate a coded data signal;

modulating the coded data signal to generate a symbol sequence; and

performing signal processing on the symbol sequence and generating the transmission stream;

performing spatial multiplexing on transmission streams and generating N multiplexed signal streams (N is an integer equal to 2 or greater); and

transmitting the N multiplexed signal streams, based on the multi-stream capability field in the received capability information for the corresponding terminal apparatus,

wherein when the multi-stream capability field indicates that multi-stream is supported for the corresponding terminal apparatus, two or more transmission streams are generated, and when the multi-stream capability field indicates that multi-stream is not supported for the corresponding terminal apparatus, one transmission stream is generated, and

wherein when the precoding field indicates a precoding method, the two or more transmission streams are generated by using the indicated precoding method.

6. The communication method according to claim 5 , wherein

the at least one main capability field includes an OFDM (Orthogonal Frequency Division Multiplexing) capability field for indicating whether an OFDM scheme is supported or not; and

when the OFDM capability field indicates that an OFDM scheme is supported for the corresponding terminal apparatus, one or more OFDM symbols are generated for the corresponding terminal apparatus by applying OFDM processing on the symbol sequence.

7. The communication method according to claim 5 , wherein

the plurality of dependent capability fields include a Phase Hopping capability field for indicating whether Phase Hopping is supported or not; and

when the Phase Hopping capability field indicates that Phase Hopping is supported for the corresponding terminal apparatus, Phase Hopping is performed to generate the transmission stream.

8. The communication method according to claim 5 , wherein

the plurality of dependent capability fields include a Modulation Coding Scheme (MCS) capability field for indicating an MCS that is supported by the corresponding terminal apparatus; and

one or more transmission streams are generated for each of the M terminal apparatuses using the MCS indicated by the MCS capability field.

Priority Claims (5)
JP JP2016-112055 · Jun 3, 2016 · national
JP JP2016-140323 · Jul 15, 2016 · national
JP JP2016-202979 · Oct 14, 2016 · national
JP JP2016-215395 · Nov 2, 2016 · national
JP JP2017-091411 · May 1, 2017 · national
Continuity (3)
Continuation 16164265 · Oct 18, 2018
Continuation PCTJP2017018770 · May 19, 2017
Related Publication 20190386719A1 · Dec 19, 2019