IP Library Granted Patent US 9,300,385
Granted Patent B2
US 9,300,385 · App. 14/482,763 · Granted Mar 29, 2016

OFDM signal transmission method and apparatus

Inventor: Tsuguhide Aoki (Kawasaki, JP)
Assignee: KABUSHIKI KAISHA TOSHIBA
H04B7/08H04B7/10H04J11/0036H04L5/023H04L25/0226H04L27/2613H04L27/2626H04L27/2647H04L1/1829
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Quick Facts
Patent No.
US 9,300,385
App. No.
14/482,763
Granted
Mar 29, 2016
Kind
B2
Abstract

An orthogonal frequency division multiplexing (OFDM) signal transmission apparatus which transmits OFDM signals by using a plurality of transmission antennas includes a subcarrier setting device which sets signals for subcarriers so as to use some of the subcarriers of the OFDM signals as pilot subcarriers to transmit pilot signals and use the remaining subcarriers as data subcarriers to transmit data signals, the subcarrier setting device changing polarities of signals for the pilot subcarriers for each transmission antenna.

Claims (43)

1. A communication device for receiving an orthogonal frequency division multiplexing (OFDM) signal from a transmitter having first and second antennas, comprising:

a receiver to receive data signals and pilot signals transmitted via a plurality of subcarriers, the pilot signals including first pilot signals and second pilot signals, the first pilot signals being transmitted via the first antenna having first polarities, the second pilot signals being transmitted via the second antenna having second polarities, the first polarities being different from the second polarities,

wherein

the data signals are transmitted via a first beam formed by using first weights,

the pilot signals are transmitted via a second beam formed by using second weights,

the second weights are different from the first weights, and

the data signals are transmitted via at least one of the first antenna and the second antenna.

2. The communication device according to claim 1 , wherein the first weights are determined by using a value of a channel response between the communication device and the transmitter of the OFDM signal.

3. The communication device according to claim 1 , wherein the second weights are determined not using a value of a channel response between the communication device and the transmitter of the OFDM signal.

4. The communication device according to claim 1 , wherein the first pilot signals are orthogonalized with the second pilot signals.

5. The communication device according to claim 1 , wherein the second weights are unit matrixes.

6. The communication device according to claim 1 , further comprising at least one receiving antenna, wherein the receiver receives data signals and pilot signals via the receiving antenna.

7. A communication device for receiving an orthogonal frequency division multiplexing (OFDM) signal from a transmitter having first and second antennas, comprising:

a receiver to receive data signals and pilot signals transmitted via a plurality of subcarriers, the pilot signals including first pilot signals and second pilot signals,

the first pilot signals being transmitted via the first antenna having first polarities, the second pilot signals being transmitted via the second antenna having second polarities, the first polarities being different from the second polarities,

wherein

the data signals are transmitted via a first beam formed by using first weights,

a beam forming process has not been performed on the pilot signals at the transmitter, and

the data signals are transmitted via at least one of the first antenna and the second antenna.

8. The communication device according to claim 7 , wherein the first weights are determined by using a value of a channel response between the communication device and the transmitter of the OFDM signal.

9. The communication device according to claim 8 , wherein the first pilot signals are orthogonalized with the second pilot signals.

10. The communication device according to claim 7 , further comprising at least one receiving antenna, wherein the receiver receives data signals and pilot signals via the at least one receiving antenna.

11. A communication method of receiving an orthogonal frequency division multiplexing (OFDM) signal from a transmitter having first and second antennas, comprising:

receiving data signals and pilot signals transmitted via a plurality of subcarriers, the pilot signals including first pilot signals and second pilot signals, the first pilot signals being transmitted via the first antenna having first polarities, the second pilot signals being transmitted via the second antenna having second polarities, the first polarities being different from the second polarities,

wherein

the data signals are transmitted via a first beam formed by using first weights,

the pilot signals are transmitted via a second beam formed by using second weights,

the second weights are different from the first weights, and

the data signals are transmitted via at least one of the first antenna and the second antenna.

12. The communication method according to claim 11 , wherein the data signals and pilot signals are received via at least one receiving antenna.

13. The communication method according to claim 11 , wherein the first weights are determined by using a value of a channel response between a receiver of the OFDM signal and the transmitter of the OFDM signal.

14. The communication method according to claim 11 , wherein the second weights are determined not using a value of a channel response between a receiver of the OFDM signal and the transmitter of the OFDM signal.

15. The communication method according to claim 11 , wherein the first pilot signals are orthogonalized with the second pilot signals.

16. The communication method according to claim 11 , wherein the second weights are unit matrixes.

17. A communication method for receiving an orthogonal frequency division multiplexing (OFDM) signal from a transmitter having first and second antennas, comprising:

receiving data signals and pilot signals transmitted via a plurality of subcarriers, the pilot signals including first pilot signals and second pilot signals, the first pilot signals being transmitted via the first antenna having first polarities, the second pilot signals being transmitted via the second antenna having second polarities, the first polarities being different from the second polarities,

wherein

the data signals are transmitted via a first beam formed by using first weights,

a beam forming process has not been performed on the pilot signals at the transmitter, and

the data signals are transmitted via at least one of the first antenna and the second antenna.

18. The communication device according to claim 17 , wherein the data signals and pilot signals are received via at least one receiving antenna.

19. The communication method according to claim 17 , wherein the first weights are determined by using a value of a channel response between a receiver of the OFDM signal and the transmitter of the OFDM signal.

20. The communication method according to claim 17 , wherein the first pilot signals are orthogonalized with the second pilot signals.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 24, 2021
From: TOSHIBA CORPORATION
To: PALMIRA WIRELESS AG
Reel/Frame 058899/0686 →
Priority Claims (5)
JP 2004-071732 · Mar 12, 2004 · national
JP 2004-176096 · Jun 14, 2004 · national
JP 2004-235349 · Aug 12, 2004 · national
JP 2004-256247 · Sep 2, 2004 · national
JP 2005-052949 · Feb 28, 2005 · national
Continuity (4)
Division 13299760 · Nov 18, 2011
Continuation 12604712 · Oct 23, 2009
Continuation 11076051 · Mar 10, 2005
Related Publication 20140376672A1 · Dec 25, 2014