IP Library › Granted Patent US 11,683,100
Granted Patent B2
US 11,683,100 · App. 17/509,799 · Granted Jun 20, 2023

Symbol generation and frame synchronization for multipulse-pulse position modulation

Inventors: Shawn Christian Koss (Carmel Valley, CA); Murali Tummala (Monterey, CA); John C. McEachen (Carmel, CA)
Assignee: The Government of the United States of America, as represented by the Secretary of the Navy
H04B10/524H04L7/0075
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Quick Facts
Patent No.
US 11,683,100
App. No.
17/509,799
Granted
Jun 20, 2023
Kind
B2
Abstract

A method and system for multipulse-pulse position modulation optical transmission that includes selecting a multipulse-pulse position modulation having a symbol alphabet having an upper-bound symbol alphabet size, and determining, based on at least one transmission characteristic associated with a transmitter, a subset of symbols of the selected symbol alphabet capable of being transmitted by the transmitter, the subset of symbols having a set of binary codewords. The method and system may include identifying two-symbol concatenation of binary codewords in the set of binary codewords, calculating a cross correlation of binary codeword in the set of binary code words through every two-symbol concatenation, determining a set of one or more acceptable codeword combinations by eliminating a portion of two-symbol concatenation of codewords corresponding to overlapping peaks in the respective calculated cross correlations, and transmitting, by the transmitter via an optical communication channel, information encoded based on the determined acceptable codeword combinations.

Claims (57)

1. A method for multipulse-pulse position modulation optical transmission comprising:

selecting a multipulse-pulse position modulation having a symbol alphabet having an upper-bound symbol alphabet size, each symbol in the symbol alphabet having a first quantity of pulse slots per frame (Q) and second quantity of pulsed positions in each frame (n);

determining, based on at least one transmission characteristic associated with a transmitter, a subset of symbols of the selected symbol alphabet capable of being transmitted by the transmitter, the subset of symbols having a set of binary codewords;

identifying every two-symbol concatenation of binary codewords in the set of binary codewords;

calculating a cross correlation of every binary codeword in the set of binary code words through every two-symbol concatenation;

determining a set of one or more acceptable codeword combinations by eliminating a portion of two-symbol concatenation of codewords corresponding to overlapping peaks in the respective calculated cross correlations; and

transmitting, by the transmitter via an optical communication channel, information encoded based on the determined acceptable codeword combinations.

2. The method of claim 1 ,

wherein selecting comprises selecting the symbol alphabet based on one or more characteristics associated with a receiver; and

wherein transmitting comprises transmitting the encoded information toward the receiver.

3. The method of claim 1 , further comprising:

mapping, by the transmitter, the determined set of one or more acceptable codeword combinations to one or more respective unique symbols;

encoding the information as a first set of the one or more unique symbols based on the mapping;

arranging the first set of one or more unique symbols in a serial manner; and

transmitting the first set of one or more unique symbols via the optical communication channel.

4. The method of claim 3 , wherein each unique symbol comprises a frame having a synchronization pulse and one or more symbol pulses, wherein the synchronization pulse is an initial pulse in the frame.

5. The method of claim 4 , wherein slot placement of the one or more symbol pulses identifies the respective unique symbol.

6. The method of claim 4 , further comprising padding at least one of the unique symbols to generate a constant frame length in every unique symbol.

7. The method of claim 3 , wherein the one or more unique symbols are nonoverlapping symbols.

8. The method of claim 3 , wherein transmitting the first set of one or more unique symbols comprises transmitting the first set of one or more unique symbols to a receiver, wherein the transmission causes the receiver to perform an inverse mapping operation on the first set of one or more unique symbols for matching, by the receiver, each of the one or more unique symbols to a corresponding binary representation.

9. A system for multipulse-pulse position modulation optical transmission comprising:

a processing device configured to:

select a multipulse-pulse position modulation having a symbol alphabet having an upper-bound symbol alphabet size, each symbol in the symbol alphabet having a first quantity of pulse slots per frame (Q) and second quantity of pulsed positions in each frame (n);

determine, based on at least one transmission characteristic associated with a transmitter, a subset of symbols of the selected symbol alphabet capable of being transmitted by the transmitter, the subset of symbols having a set of binary codewords;

identify every two-symbol concatenation of binary codewords in the set of binary codewords;

calculate a cross correlation of every binary codeword in the set of binary code words through every two-symbol concatenation; and

determine a set of one or more acceptable codeword combinations by eliminating a portion of two-symbol concatenation of codewords corresponding to overlapping peaks in the respective calculated cross correlations; and

a transmitter configured to transmit, via an optical communication channel, information encoded based on the determined acceptable codeword combinations.

10. The system of claim 9 ,

wherein selecting comprises selecting the symbol alphabet based on one or more characteristics associated with a receiver; and

wherein transmitting comprises transmitting the encoded information toward the receiver.

11. The system of claim 10 , wherein the transmitter is further configured to:

map the determined set of one or more acceptable codeword combinations to one or more respective unique symbols;

encode the information as a first set of the one or more unique symbols based on the mapping;

arrange the first set of one or more unique symbols in a serial manner; and

transmit the first set of one or more unique symbols via the optical communication channel.

12. The system of claim 11 , wherein each unique symbol comprises a frame having a synchronization pulse and one or more symbol pulses, wherein the synchronization pulse is an initial pulse in the frame.

13. The system of claim 12 , wherein slot placement of the one or more symbol pulses identifies the respective unique symbol.

14. The system of claim 12 , further comprising padding at least one of the unique symbols to generate a constant frame length in every unique symbol.

15. The system of claim 11 , wherein the one or more unique symbols are nonoverlapping symbols.

16. The system of claim 11 , wherein the transmitter is further configured to transmit the first set of one or more unique symbols to a receiver, wherein the transmission causes the receiver to perform an inverse mapping operation on the first set of one or more unique symbols for matching, by the receiver, each of the one or more unique symbols to a corresponding binary representation.

17. A non-transitory computer readable medium comprising computer code for multipulse-pulse position modulation optical transmission, the computer code, when executed by a processor, performing steps to:

select a multipulse-pulse position modulation having a symbol alphabet having an upper-bound symbol alphabet size, each symbol in the symbol alphabet having a first quantity of pulse slots per frame (Q) and second quantity of pulsed positions in each frame (n);

determine, based on at least one transmission characteristic associated with a transmitter, a subset of symbols of the selected symbol alphabet capable of being transmitted by the transmitter, the subset of symbols having a set of binary codewords;

identify every two-symbol concatenation of binary codewords in the set of binary codewords;

calculate a cross correlation of every binary codeword in the set of binary code words through every two-symbol concatenation;

determine a set of one or more acceptable codeword combinations by eliminating a portion of two-symbol concatenation of codewords corresponding to overlapping peaks in the respective calculated cross correlations; and

cause transmission, by the transmitter via an optical communication channel, information encoded based on the determined acceptable codeword combinations.

18. The non-transitory computer readable medium of claim 17 ,

wherein selecting comprises selecting the symbol alphabet based on one or more characteristics associated with a receiver; and

wherein transmitting comprises transmitting the encoded information toward the receiver.

19. The non-transitory computer readable medium of claim 17 , wherein the computer code, when executed by the processor, causing the transmitter to:

map the determined set of one or more acceptable codeword combinations to one or more respective unique symbols;

encode the information as a first set of the one or more unique symbols based on the mapping;

arrange the first set of one or more unique symbols in a serial manner; and

transmit the first set of one or more unique symbols via the optical communication channel.

20. The non-transitory computer readable medium of claim 19 , wherein each unique symbol comprises a frame having a synchronization pulse and one or more symbol pulses, wherein the synchronization pulse is an initial pulse in the frame.

Continuity (2)
Provisional Application 63104940 · Oct 23, 2020
Related Publication 20220131614A1 · Apr 28, 2022
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