IP Library › Granted Patent US 9,949,148
Granted Patent B2
US 9,949,148 · App. 15/252,970 · Granted Apr 17, 2018

Systems and methods for high rate OFDM communications

Inventors: Marcos C. Tzannes (Alamo, CA); Dongjun Lee (San Francisco, CA); Todor Cooklev (Fort Wayne, IN); Colin Lanzl (Nashua, NH)
Assignee: INTEL CORPORATION
H04W24/02H04L1/0028H04L1/1671H04L5/0055H04L5/1438H04L27/2602H04L27/2607H04L27/2649H04L69/24H04W24/08H04W28/18H04W28/22H04W84/12H04L5/0094H04L27/2601H04W28/04H04W28/06
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Quick Facts
Patent No.
US 9,949,148
App. No.
15/252,970
Granted
Apr 17, 2018
Kind
B2
Abstract

Messages transmitted between a receiver and a transmitter are used to maximize a communication data rate. In particular, a multicarrier modulation system uses messages that are sent from the receiver to the transmitter to exchange one or more sets of optimized communication parameters. The transmitter then stores these communication parameters and when transmitting to that particular receiver, the transmitter utilizes the stored parameters in an effort to maximize the data rate to that receiver. Likewise, when the receiver receives packets from that particular transmitter, the receiver can utilize the stored communication parameters for reception.

Claims (42)

1. A communications system configured for packet communication comprising:

a transmitter that transmits a packet over a communications channel, the packet including a packet header having a signal field, the signal field including:

Length information in bytes and Rate information in an OFDM symbol, the Length information and the Rate information being such that a receiver can correctly determine a duration of the packet,

an indication of communication parameters used for transmission of the packet, and

a receiver station identifier;

the receiver, processor and connected memory configured to receive the packet, the packet including the packet header having the signal field, the receiver further configured to decode the receiver station identifier to determine whether the receiver is an intended recipient of the packet and not decode a remainder of the packet when the receiver determines the receiver is not an intended recipient of the packet, wherein the receiver receives the packet at a first rate using a first cyclic prefix length and a first pilot tone allocation and receives a message comprising communication parameters which include a second cyclic prefix length and a second pilot tone allocation.

2. The system of claim 1 , wherein the receiver is configured to enter a low power mode when the receiver determines the receiver is not the intended recipient of the packet.

3. The system of claim 1 , wherein the receiver is configured to receive another packet at a second rate using the second cyclic prefix length and the second pilot tone allocation.

4. The system of claim 1 , wherein a first header field indicates the first cyclic prefix length and the first pilot tone allocation used for communication.

5. The system of claim 1 , wherein the receiver, using the Rate and Length information, will incorrectly demodulate data symbols of the packet.

6. The system of claim 1 , wherein the system achieves one or more of: power saving, processing power reduction, a data rate increase, a data rate decrease, a maximization of a data rate, an optimization of a data communication rate, a regulation of a data rate, a performance modification and/or an ability to defer communications.

7. A transceiver configured for packet communication comprising:

a processor,

a transmitter, in communication with the processor, that transmits a packet over a communications channel, the packet including a packet header having a signal field, the signal field including:

Length information in bytes and Rate information in an OFDM symbol, the Length information and the Rate information being such that a receiver can correctly determine a duration of the packet,

an indication of communication parameters used for transmission of the packet, and

a receiver station identifier;

the packet including the packet header having the signal field usable by the receiver to decode the receiver station identifier to determine whether the receiver is an intended recipient of the packet and not decode a remainder of the packet when the receiver determines the receiver is not an intended recipient of the packet, wherein the packet is transmitted by the transmitter at a first rate using a first cyclic prefix length and a first pilot tone allocation and a message is transmitted by the transmitter comprising communication parameters which include a second cyclic prefix length and a second pilot tone allocation.

8. The transceiver of claim 7 , wherein a first header field indicates the first cyclic prefix length and the first pilot tone allocation used for communication.

9. The transceiver of claim 7 , wherein the Rate and Length information cause incorrect demodulation of data symbols of the packet.

10. The transceiver of claim 7 , wherein the transceiver achieves one or more of: power saving, processing power reduction, a data rate increase, a data rate decrease, a maximization of a data rate, an optimization of a data communication rate, a regulation of a data rate, a performance modification and/or an ability to defer communications.

11. A non-transitory computer-readable information storage media having stored thereon instructions, that when executed by one or more processors, cause to be performed a method for packet communication comprising:

transmitting, by a transmitter, a packet, the packet including a packet header having a signal field, the signal field including:

Length information in bytes and Rate information in an OFDM symbol, the Length information and the Rate information being such that a receiver can correctly determine a duration of the packet,

an indication of communication parameters used for transmission of the packet, and

a receiver station identifier;

receiving, by the receiver, processor and connected memory, the packet, the packet including the packet header having the signal field; and

decoding the receiver station identifier to determine whether the receiver is an intended recipient of the packet and not decoding a remainder of the packet when the receiver determines the receiver is not an intended recipient of the packet, wherein the receiver receives the packet at a first rate using a first cyclic prefix length and a first pilot tone allocation and receives a message comprising communication parameters which include a second cyclic prefix length and a second pilot tone allocation.

12. The media of claim 11 , wherein the receiver is adapted for entering a low power mode if the receiver determines it is not the intended recipient of the packet.

13. The media of claim 11 , wherein the receiver receives another packet at a second rate using the second cyclic prefix length and the second pilot tone allocation.

14. The media of claim 11 , wherein a first header field indicates the first cyclic prefix length and the first pilot tone allocation used for communication.

15. The media of claim 11 , wherein the receiver, using the Rate and Length information, will incorrectly demodulate data symbols of the packet.

16. The media of claim 11 , wherein the method achieves one or more of: power saving, processing power reduction, a data rate increase, a data rate decrease, a maximization of a data rate, an optimization of a data communication rate, a regulation of a data rate, a performance modification and/or an ability to defer communications.

17. A non-transitory computer-readable information storage media having stored thereon instructions, that when executed by one or more processors, cause to be performed a method for packet communication comprising:

transmitting, by a transmitter in communication with a processor, a packet, the packet including a packet header having a signal field, the signal field including:

Length information in bytes and Rate information in an OFDM symbol, the Length information and the Rate information being such that a receiver can correctly determine a duration of the packet,

an indication of communication parameters used for transmission of the packet, and

a receiver station identifier,

the packet including the packet header having the signal field usable by the receiver to decode the receiver station identifier to determine whether the receiver is an intended recipient of the packet and not decode a remainder of the packet when the receiver determines the receiver is not an intended recipient of the packet, wherein the packet is transmitted at a first rate using a first cyclic prefix length and a first pilot tone allocation and a message is transmitted comprising communication parameters which include a second cyclic prefix length and a second pilot tone allocation.

18. The media of claim 17 , wherein a first header field indicates the first cyclic prefix length and the first pilot tone allocation used for communication.

19. The media of claim 17 , wherein the Rate and Length information cause incorrect demodulation of data symbols of the packet.

20. The media of claim 17 , wherein the method achieves one or more of: power saving, processing power reduction, a data rate increase, a data rate decrease, a maximization of a data rate, an optimization of a data communication rate, a regulation of a data rate, a performance modification and/or an ability to defer communications.

Continuity (8)
Continuation 14280944 · May 19, 2014
Continuation 13838289 · Mar 15, 2013
Continuation 12966246 · Dec 13, 2010
Continuation 12642495 · Dec 18, 2009
Continuation 12419166 · Apr 6, 2009
Continuation 10382921 · Mar 7, 2003
Provisional Application 60363218 · Mar 8, 2002
Related Publication 20160373969A1 · Dec 22, 2016