IP Library Granted Patent US 11,005,564
Granted Patent B2
US 11,005,564 · App. 16/697,285 · Granted May 11, 2021

Communication method and apparatus using hybrid modulation scheme in communication system

Inventors: Yeong Min Jang (Seoul, KR); Thieu Minh Duc (Seoul, KR)
Assignee: KOOKMIN UNIVERSITY INDUSTRY ACADEMY COOPERATION FOUNDATION
H04B10/116H04B10/1143H04B10/502H04B10/5161H04B10/54H04B10/556H04B10/677
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Quick Facts
Patent No.
US 11,005,564
App. No.
16/697,285
Granted
May 11, 2021
Kind
B2
Abstract

Provided are a communication method and apparatus using a hybrid modulation scheme in a communication system. The communication node uses a hybrid modulation scheme in the communication system and includes a processor, a first light-emitting diode (LED) array configured to transmit a first signal by blinking a first LED set according to control of the processor, a second LED array configured to transmit a second signal by blinking a second LED set according to control of the processor, and a memory configured to store one or more instructions executed by the processor. Therefore, performance of the communication system can be improved.

Claims (42)

1. A first communication node in a communication system, the first communication node comprising:

a processor;

a first light-emitting diode (LED) array configured to transmit a first signal by blinking a first LED set of the first LED array based on first control of the processor;

a second LED array configured to transmit a second signal by blinking a second LED set of the second LED array based on second control of the processor; and

a memory storing one or more instructions configured to be executed by the processor,

wherein the one or more instructions, when executed by the processor, cause the processor to:

modulate control information using camera on-off keying (C-OOK);

transmit the first signal including the modulated control information to a second communication node by blinking the first LED;

modulate user data using dimmable spatial 8-phase shift keying (DS8-PSK); and

transmit the second signal including the modulated user data to the second communication node by blinking the second LED set,

wherein each of the first LED set and the second LED set includes one or more LEDs,

wherein the control information includes information indicating that a hybrid modulation scheme using the C-OOK and DS8-PSK is supported, and

wherein the one or more instructions, when executed by the processor, further case the processor to transmit the second signal to the second communication mode when receiving a response to the first signal from the second communication node, the response including information indicating that the second communication node supports the hybrid modulation scheme using the C-OOK and DS8-PSK.

2. The first communication node of claim 1 , wherein the control information further includes an identifier (ID) of the first communication node, and an ID of the second communication node.

3. The first communication node of claim 1 , wherein the control information further includes information indicating a number of LED groups included in the second LED array, information indicating a number of LEDs included in each of the LED groups, and information indicating an LED arrangement in each of the LED groups.

4. The first communication node of claim 1 , wherein the control information further includes information on a first table indicating mapping relationships between global phase shift values and bit streams, information on a second table indicating mapping relationships between bit streams and local phase shift values according to dimming levels, and information on a pattern of dimming levels.

5. The first communication node of claim 4 , wherein the pattern of dimming levels is applied in units of packets or sub-packets, the packets include a plurality of sub-packets, and a plurality of sub-packets included in the same packet include identical user data.

6. The first communication node of claim 1 , wherein the second signal includes a reference signal transmitted through a reference LED group included in the second LED array and a data signal transmitted through a data LED group included in the second LED array,

wherein the reference signal has a first local phase shift value,

wherein the data signal has a second local phase shift value, and

wherein a difference between the first local phase shift value and the second local phase shift value is a global phase shift value.

7. A first communication node in a communication system, the first communication node comprising:

a processor;

a first camera configured to photograph a first blink state of a first light-emitting diode (LED) array included in a second communication node based on first control of the processor;

a second camera configured to photograph a second blink state of a second LED array included in the second communication node based on second control of the processor; and

a memory storing one or more instructions configured to be executed by the processor,

wherein the one or more instructions, when executed by the processor, cause the processor to:

acquire control information from the first blink state using camera on-off keying (C-OOK); and

acquire user data from the second blink state using dimmable spatial 8-phase shift keying (DS8-PSK),

wherein the control information includes information indicating that a hybrid modulation scheme using the C-OOK and DS8-PSK is supported, and

wherein the one or more instructions, when executed by the processor, further cause the processor to:

transmit, to a second communication node, a response to the control information, the response comprising information indicating that the first communication node supports the hybrid modulation scheme using the C-OOK and DS8-PSK; and

acquire the user data that the second communication node sends using the DS8-PSK after the response is received from the first communication node.

8. The first communication node of claim 7 , wherein the control information further includes an identifier (ID) of the first communication node, an ID of the second communication node, information indicating a number of LED groups included in the second LED array, information indicating a number of LEDs included in each of the LED groups, and information indicating an LED arrangement in each of the LED groups.

9. The first communication node of claim 7 , wherein the control information further includes information on a first table indicating mapping relationships between global phase shift values and bit streams, information on a second table indicating mapping relationships between bit streams and local phase shift values according to dimming levels, and information on a pattern of dimming levels.

10. The first communication node of claim 8 , wherein the pattern of dimming levels is applied in units of packets or sub-packets,

wherein the packets include a plurality of sub-packets, and

wherein a plurality of sub-packets included in the same packet include identical user data.

11. The first communication node of claim 7 , wherein the processor is configured to acquire the user data on the basis of a reference signal received through a reference LED group included in the second LED array and a data signal received through a data LED group included in the second LED array,

wherein the reference signal has a first local phase shift value,

wherein the data signal has a second local phase shift value, and

wherein a difference between the first local phase shift value and the second local phase shift value is a global phase shift value.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 4, 2019
From: JANG, YEONG MIN; DUC, THIEU MINH
To: KOOKMIN UNIVERSITY INDUSTRY ACADEMY COOPERATION FOUNDATION
Reel/Frame 051183/0131 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 27, 2019
From: JANG, YEONG MIN; DUC, THIEU MINH
To: KOOKMIN UNIVERSITY INDUSTRY ACADEMY COOPERATION
Reel/Frame 051126/0281 →
Priority Claims (2)
KR 10-2019-0006357 · Jan 17, 2019 · national
KR 10-2019-0046218 · Apr 19, 2019 · national
Continuity (1)
Related Publication 20200235813A1 · Jul 23, 2020