IP Library Granted Patent US 9,660,851
Granted Patent B2
US 9,660,851 · App. 14/754,596 · Granted May 23, 2017

Modulation and equalization in an orthonormal time-frequency shifting communications system

Inventors: Ronny Hadani (Austin, TX); Salim Shlomo Rakib (Cupertino, CA)
H04L27/2627H04B7/005H04B7/0619H04L5/0007H04L5/0044H04L27/01H04L27/265H04L27/2634H04L27/2655H04L27/2697H04L5/0016H04L23/02H04L25/03834
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Quick Facts
Patent No.
US 9,660,851
App. No.
14/754,596
Granted
May 23, 2017
Kind
B2
Abstract

A system and method of providing a modulated signal useable in a signal transmission system. The method includes transforming, perhaps with respect to both time and frequency, a data frame including a plurality of data elements into a transformed data matrix. The transformed data matrix includes a plurality of transformed data elements where each of the plurality of transformed data elements is based upon each of the plurality of data elements. The method further includes generating the modulated signal in accordance with the transformed data elements of the transformed data matrix.

Claims (48)

1. A method, comprising:

transforming a data frame including a plurality of data elements into a transformed data matrix having a plurality of transformed data elements wherein ones of the plurality of transformed data elements are based upon multiple ones of the plurality of data elements and wherein the transformed data matrix has a first dimension of N transformed data elements and a second dimension of M transformed data elements, wherein N and M are greater than one, and further wherein the transforming includes transforming ones of the plurality of data elements with respect to both time and frequency;

generating a modulated signal in accordance with the transformed data elements of the transformed data matrix; and

transmitting, from at least one antenna of a wireless device, the modulated signal using a carrier signal.

2. The method of claim 1 where N is equal to M.

3. A method, comprising:

transforming a data frame including a plurality of data elements into a transformed data matrix having a plurality of transformed data elements wherein ones of the plurality of transformed data elements are based upon multiple ones of the plurality of data elements and wherein the transformed data matrix has a first dimension of N transformed data elements and a second dimension of M transformed data elements, wherein N and M are greater than one;

generating a modulated signal in accordance with the transformed data elements of the transformed data matrix; and

transmitting, from at least one antenna of a wireless device, the modulated signal using a carrier signal;

wherein the data frame comprises a time-frequency plane of information, the data frame including a pilot element at a position within the time-frequency plane of information associated with the wireless device wherein other positions within the time-frequency plane are associated with other wireless devices.

4. A method, comprising:

receiving signal information corresponding to M time-frequency planes of information collected by M receive antenna instances, the M time-frequency planes of information including N pilot signals where each of the N pilot signals are associated with a different time-frequency plane location;

transforming a data frame including a plurality of data elements into a transformed data matrix having a plurality of transformed data elements wherein ones of the plurality of transformed data elements are based upon multiple ones of the plurality of data elements and wherein the transformed data matrix has a first dimension of N transformed data elements and a second dimension of M transformed data elements, wherein N and M are greater than one;

generating a modulated signal in accordance with the transformed data elements of the transformed data matrix; and

transmitting, from at least one antenna of a wireless device, the modulated signal using a carrier signal.

5. A method, comprising:

transforming a data frame including a plurality of data elements into a transformed data matrix having a plurality of transformed data elements wherein each of the plurality of transformed data elements is based upon each of the plurality of data elements wherein the transformed data frame has a first dimension of N transformed data elements and a second dimension of M transformed data elements, wherein N and M are greater than one, and wherein the transforming includes transforming each of the plurality of data elements with respect to both time and frequency;

generating the modulated signal in accordance with the transformed data elements of the transformed data matrix; and

transmitting, from at least one antenna of a wireless device, the modulated signal using a carrier signal.

6. The method of claim 5 wherein each of the plurality of transformed data elements includes a weighted contribution corresponding to each of the plurality of data elements.

7. The method of claim 5 where N is equal to M.

8. A method, comprising:

transforming a data frame including a plurality of data elements into a transformed data matrix having a plurality of transformed data elements wherein ones of the plurality of transformed data elements are based upon multiple ones of the plurality of data elements and wherein the transformed data matrix has a first dimension of N transformed data elements and a second dimension of M transformed data elements, wherein N and M are greater than one;

generating a modulated signal in accordance with the transformed data elements of the transformed data matrix; and

transmitting, from at least one antenna of a wireless device, the modulated signal using a carrier signal;

wherein the data frame comprises a time-frequency plane of information, the data frame including a pilot element at a position within the time-frequency plane of information associated with the wireless device wherein other positions within the time-frequency plane are associated with other wireless devices.

9. A method, comprising:

receiving signal information corresponding to M time-frequency planes of information collected by M receive antenna instances, the M time-frequency planes of information including N pilot signals where each of the N pilot signals are associated with a different time-frequency plane location;

transforming a data frame including a plurality of data elements into a transformed data matrix having a plurality of transformed data elements wherein ones of the plurality of transformed data elements are based upon multiple ones of the plurality of data elements and wherein the transformed data matrix has a first dimension of N transformed data elements and a second dimension of M transformed data elements, wherein N and M are greater than one;

generating a modulated signal in accordance with the transformed data elements of the transformed data matrix; and

transmitting, from at least one antenna of a wireless device, the modulated signal using a carrier signal.

10. A wireless device, comprising:

an antenna;

a transmitter coupled to the antenna, the transmitter including:

an input port;

an output port;

a processor;

a memory including program code executable by the processor, the program code including:

code for receiving, at the input port, a data frame including a plurality of data elements;

code for transforming the data frame into a transformed data matrix having a plurality of transformed data elements wherein ones of the plurality of transformed data elements are based upon multiple ones of the plurality of data elements wherein the data frame has a first dimension of N data elements and a second dimension of M data elements, wherein N and M are greater than one, and wherein the program code includes code for transforming ones of the plurality of data elements with respect to both time and frequency; and

code for generating a modulated signal in accordance with the transformed data elements of the transformed data matrix and for providing the modulated signal to the output port.

11. The wireless device of claim 10 wherein each of the plurality of transformed data elements includes a weighted contribution corresponding to each of the plurality of data elements.

12. The wireless device of claim 10 wherein the program code includes code for transforming each of the plurality of data elements with respect to both time and frequency.

13. The wireless device of claim 10 where N is equal to M.

14. A method, comprising:

transforming a data frame including a plurality of data elements into a transformed data matrix having a plurality of transformed data elements wherein ones of the plurality of transformed data elements are based upon multiple ones of the plurality of data elements and wherein the transformed data matrix has a first dimension of N transformed data elements and a second dimension of M transformed data elements, wherein N and M are greater than one, and wherein the data frame comprises a time-frequency plane of information, the data frame including a pilot element at a position within the time-frequency plane of information associated with the wireless device wherein other positions within the time-frequency plane are associated with other wireless devices;

generating a modulated signal in accordance with the transformed data elements of the transformed data matrix; and

transmitting, from at least one antenna of a wireless device, the modulated signal using a carrier signal.

Assignments (3)
RELEASE OF SECURITY INTEREST Recorded Jul 10, 2025
From: NEW ENTERPRISE ASSOCIATES 14, LIMITED PARTNERSHIP
To: COHERE TECHNOLOGIES, INC.
Reel/Frame 071913/0090 →
SECURITY INTEREST Recorded Apr 1, 2020
From: COHERE TECHNOLOGIES, INC.
To: NEW ENTERPRISE ASSOCIATES 14, LIMITED PARTNERSHIP
Reel/Frame 052287/0739 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 19, 2016
From: HADANI, RONNY; RAKIB, SELIM SHLOMO
To: COHERE TECHNOLOGIES, INC.
Reel/Frame 039192/0542 →
Continuity (12)
Continuation 13927087 · Jun 25, 2013
Continuation In Part 13117119 · May 26, 2011
Continuation In Part 13117124 · May 26, 2011
Provisional Application 61664020 · Jun 25, 2012
Provisional Application 61801398 · Mar 15, 2013
Provisional Application 61801366 · Mar 15, 2013
Provisional Application 61801435 · Mar 15, 2013
Provisional Application 61801495 · Mar 15, 2013
Provisional Application 61801994 · Mar 15, 2013
Provisional Application 61801968 · Mar 15, 2013
Provisional Application 61349619 · May 28, 2010
Related Publication 20160182269A1 · Jun 23, 2016