IP Library Granted Patent US 8,509,326
Granted Patent B2
US 8,509,326 · App. 12/619,156 · Granted Aug 13, 2013

OFDM space-time or space-frequency block code transmitter

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Quick Facts
Patent No.
US 8,509,326
App. No.
12/619,156
Granted
Aug 13, 2013
Kind
B2
Abstract

A transmitter for transmitting OFDM signals includes a space-time or space-frequency encoder to generate coded OFDM symbols by arranging a sequence of OFDM symbols or variants thereof in a predetermined space-time or space-frequency block matrix or a portion thereof. The transmitter also includes a frequency selector to select a particular OFDM carrier frequency out of a number of available OFDM carrier frequencies, and a signal generator to generate OFDM signals by applying the selected OFDM carrier frequency to the coded OFDM symbols.

Claims (40)

1. A transmitter for transmitting OFDM signal, comprising:

a space-time or space frequency encoder configured to generate coded OFDM symbols by arranging a sequence of OFDM symbols or variants thereof in a predetermined space-time or space-frequency block matrix or a portion thereof according to a delay tolerant code,

a frequency selector configured to select a particular OFDM carrier frequency out of a number of available OFDM carrier frequencies, and

a signal generator configured to generate OFDM signals by applying the selected OFDM carrier frequency to the coded OFDM symbols;

a first transmission unit comprising a first space-time or space-frequency encoder configured to generate first coded OFDM symbols by arranging the OFDM symbols of the sequence or variants thereof in a first portion of the predetermined space-time or space-frequency block matrix, a first signal generator configured to generate first coded OFDM signals by applying the selected OFDM carrier frequency to the first coded OFDM symbols, and at least one transmission antenna configured to transmit the first coded OFDM signals, and

a second transmission unit spatially separated from the first transmission unit, the second transmission unit comprising a reception antenna configured to receive the first coded OFDM signals, a second space-time or space-frequency encoder configured to generate second coded OFDM symbols by arranging the OFDM symbols of the sequence or variants thereof in a second portion of the predetermined space-time or space-frequency block matrix, a second signal generator configured to generate second coded OFDM signals by applying the selected OFDM carrier frequency to the second coded OFDM symbols, and at least one transmission antenna to transmit the second coded OFDM signals.

2. The transmitter according to claim 1 , wherein

the first encoder is configured to arrange the OFDM symbols of the sequence or variants thereof in a first row of the block matrix, and

the second encoder is configured to arrange the OFDM symbols of the sequence or variants thereof in a second row of the block matrix.

3. The transmitter according to claim 1 , wherein the second transmission unit is configured to start transmitting the second coded OFDM signals during receipt of the first coded OFDM signals from the first transmission unit.

4. The transmitter according to claim 1 , wherein

one or more of the first transmission unit and the second transmission unit comprises more than one transmission antenna.

5. The transmitter according to claim 1 , further comprising:

an orthogonality operation unit arranged in one or more of the first transmission unit and the second transmission unit, wherein the orthogonality operation unit is configured to apply an orthogonality operation on one or more of the first coded OFDM signals and the second coded OFDM signals or respective particular ones thereof, so that time overlapping first and second coded OFDM symbols of successive blocks of OFDM symbols are orthogonal to each other.

6. A transmitter for transmitting OFDM signals, comprising:

a first transmission unit comprising a first space-time or space-frequency encoder configured to generate first coded OFDM symbols by arranging a sequence of OFDM symbols or variants thereof in a first portion of a predetermined space-time block matrix, a first signal generator configured to generate first coded OFDM signals by applying an OFDM carrier frequency to the first coded OFDM symbols, and at least one transmission antenna configured to transmit the first coded OFDM signals, and

a second transmission unit spatially separated from the first transmission unit, the second transmission unit comprising a reception antenna configured to receive the first coded OFDM signals, a second space-time or space-frequency encoder configured to generate second coded OFDM symbols by arranging the OFDM symbols of the sequence of variants thereof in a second portion of the predetermined space-time or space-frequency block matrix, a second signal generator configured to generate second coded OFDM signals by applying an OFDM carrier frequency to the second coded OFDM signals, and at least one transmission antenna configured to transmit the second coded OFDM signals, and

an orthogonality operation unit arranged in one or more of the first transmission unit and the second transmission unit, wherein the orthogonality operation unit is configured to apply an orthogonality operation on one or more of the first coded OFDM signals and the second coded OFDM signals or respective particular ones thereof, so that time overlapping first and second coded OFDM symbols of successive blocks of OFDM symbols are orthogonal to each other.

7. The transmitter according to claim 6 , further comprising:

a frequency selector operably associated with the first transmission unit configured to select a particular OFDM carrier frequency out of a number of available OFDM carrier frequencies, each time a sequence of OFDM symbols or variants thereof is arranged in a first portion of the predetermined space-time or space-frequency block matrix, and

wherein the first signal generator is configured to generate the first coded OFDM signals by applying the particular selected OFDM carrier frequency to the first coded OFDM symbols.

8. The transmitter according to claim 6 , wherein

the first space-time or space-frequency encoder is configured to arrange the OFDM symbols of the sequence or variants thereof in a first row of the space-time or space-frequency block matrix, and

the second space-time or space-frequency encoder is configured to arrange the OFDM symbols of the sequence or variants thereof in a second row of the space-time or space-frequency block matrix.

9. The transmitter according to claim 6 , wherein the second transmission unit is configured to start transmitting the second coded OFDM signals during receipt of the first coded OFDM signals from the first transmission unit.

10. The transmitter according to claim 6 , wherein one or more of the first transmission unit and the second transmission unit comprises more than one transmission antenna.

11. The transmitter according to claim 6 , wherein the first signal generator and the second signal generator are configured such that time overlapping first and second coded OFDM signals of successive blocks of OFDM signals have different signal strength or power.

12. The transmitter according to claim 6 , wherein the first transmission unit and the second transmission unit are electrically connected to each other by a wire.

13. A receiver for receiving OFDM signals, the OFDM signals being transmitted in the form of space-time or space-frequency coded blocks containing first coded OFDM signals and second coded OFDM signals, the receiver comprising:

at least one reception antenna configured to receive the first and second coded OFDM signals, and

an orthogonality operation unit configured to apply an orthogonality operation on one or more of the received first coded OFDM signals and the-received second coded OFDM signals or respective particular ones thereof, so that time overlapping first and second coded OFDM symbols of successive blocks of OFDM symbols are orthogonal to each other.

14. The receiver according to claim 13 , wherein the orthogonality operation unit is arranged to apply a phase rotation operation on one or more of the first coded OFDM signals and the second coded OFDM signals or respective particular ones thereof so that overlapping symbols have a phase difference of 90° relative to each other.

15. A method for transmitting and receiving OFDM signals, comprising:

in a first OFDM transmission unit, generating first coded data symbols by arranging the OFDM symbols of the sequence or variants thereof in a space-time or space-frequency block matrix or a portion thereof, and transmitting the first coded data symbols,

in a second OFDM transmission unit spatially separated from the first OFDM transmission unit, receiving the first coded data symbols, generating second coded data symbols by arranging the OFDM symbols of the sequence or variants thereof in the space-time or space-frequency block matrix or a portion thereof, and transmitting the second coded data symbols, and

applying an orthogonality operation on the first or second coded data symbols or on respective particular ones thereof so that time overlapping first and second coded data symbols of successive blocks of coded data symbols are orthogonal to each other.

16. The method according to claim 15 , wherein the orthogonality operation is comprised of a phase rotation of received OFDM symbols.

17. The method according to claim 15 , wherein the orthogonality operation is comprised of a signal strength or signal power variation of transmitted OFDM symbols.

18. The method according to claim 15 , further comprising receiving the first coded OFDM symbols by the second OFDM transmission unit with one or more reception antenna.

19. The method according to claim 15 , further comprising receiving the first and second coded OFDM symbols with more than one reception antenna.

Assignments (6)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 11, 2019
From: INTEL CORPORATION
To: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP., LTD.
Reel/Frame 049733/0343 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 21, 2019
From: INTEL DEUTSCHLAND GMBH
To: INTEL CORPORATION
Reel/Frame 048656/0086 →
CHANGE OF NAME Recorded Nov 6, 2015
From: INTEL MOBILE COMMUNICATIONS GMBH
To: INTEL DEUTSCHLAND GMBH
Reel/Frame 037057/0061 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 19, 2012
From: INTEL MOBILE COMMUNICATIONS TECHNOLOGY GMBH
To: INTEL MOBILE COMMUNICATIONS GMBH
Reel/Frame 027556/0709 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 18, 2012
From: INFINEON TECHNOLOGIES AG
To: INTEL MOBILE COMMUNICATIONS TECHNOLOGY GMBH
Reel/Frame 027548/0623 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 28, 2010
From: MUECK, MARKUS
To: INFINEON TECHNOLOGIES AG
Reel/Frame 023865/0704 →