IP Library › Granted Patent US 12,155,413
Granted Patent B2
US 12,155,413 · App. 18/015,403 · Granted Nov 26, 2024

Communication device, communication method, communication system and communication program

Inventors: Takamitsu Tochino (Musashino, JP); Hirotaka Ujikawa (Musashino, JP); Hirotaka Nakamura (Musashino, JP)
Assignee: NIPPON TELEGRAPH AND TELEPHONE CORPORATION
H04B10/0791H04B10/0771H04B10/0795
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Quick Facts
Patent No.
US 12,155,413
App. No.
18/015,403
Granted
Nov 26, 2024
Kind
B2
Abstract

A communication device is connected to a wavelength-multiplexed optical ring network, and performs communication by performing time-division multiplexing on optical signals at each wavelength. In a case where a control signal transmitted from the master communication device is not received in a predetermined period, the communication device instructs a scheduler unit to suspend transmission of data at a failure wavelength that is the wavelength at which the host communication device has been determined not to be operating properly, also instructs the scheduler unit to transmit the data stored in the buffer of the failure wavelength at another wavelength, and suspends allocation of new data to the buffer of the failure wavelength. Thus, the delay in transmission of data at the failure wavelength can be shortened.

Claims (38)

1. A communication device comprising:

a communication unit that is connected to a wavelength-multiplexed optical ring network, conducts communication by performing time-division multiplexing on an optical signal for each wavelength, and receives a control signal transmitted from a master communication device;

a determination unit that determines, for each wavelength, that the master communication device is not operating properly, when the control signal is not received in a predetermined period;

an allocation unit that allocates data to be transmitted to a buffer of each wavelength;

a scheduler unit that transmits, for each wavelength, data stored in the buffer of each wavelength in accordance with a predetermined schedule;

a scheduler control unit that instructs the scheduler unit to suspend transmission of data at a failure wavelength, and instructs the scheduler unit to transmit the data stored in the buffer of the failure wavelength at another wavelength, the failure wavelength being a wavelength at which the master communication device has been determined not to be operating properly; and

an allocation control unit that suspends allocation of new data to the buffer of the failure wavelength.

2. The communication device according to claim 1 , wherein

the determination unit determines that one of other communication devices including the subject communication device has started operating as a new master communication device in place of the master communication device that is not operating properly,

the scheduler control unit instructs the scheduler unit to resume the transmission of data at the failure wavelength, and

the allocation control unit instructs the allocation unit to resume the allocation of new data to the buffer of the failure wavelength.

3. A communication method that is used in a communication system that conducts communication by performing time-division multiplexing on an optical signal for each wavelength, one communication device of a plurality of communication devices connected to a wavelength-multiplexed optical ring network being a master communication device, the other communication devices being slave communication devices,

wherein

the master communication device

transmits a control signal to a plurality of the slave communication devices, and

each slave communication device

determining, for each wavelength, that the master communication device is not operating properly when the control signal is not received from the master communication device in a predetermined period,

instructs a scheduler unit to suspend transmission of data at a failure wavelength, the scheduler unit controlling transmission of data at the failure wavelength, the failure wavelength being a wavelength at which the master communication device has been determined not to be operating properly, and

when there is data stored in a buffer of the failure wavelength, instructs the scheduler unit to transmit the data stored in the buffer of the failure wavelength at another wavelength, and suspends allocation of new data to the buffer of the failure wavelength.

4. The communication method according to claim 3 , wherein

the slave communication device

determines that one of the other communication devices including the subject communication device has started operating as a new master communication device in place of the master communication device that is not operating properly,

instructs the scheduler unit to resume the transmission of data at the failure wavelength, and

instructs the allocation unit to resume the allocation of new data to the buffer of the failure wavelength.

5. A communication system that conducts communication by performing time-division multiplexing on optical signals for each wavelength, one communication device of a plurality of communication devices connected to a wavelength-multiplexed optical ring network being a master communication device, the other communication devices being slave communication devices,

wherein

the master communication device

transmits a control signal to a plurality of the slave communication devices, and

each slave communication device

determining, for each wavelength, that the master communication device is not operating properly when the control signal is not received from the master communication device in a predetermined period,

instructs a scheduler unit to suspend transmission of data at a failure wavelength, the scheduler unit controlling transmission of data at the failure wavelength, the failure wavelength being a wavelength at which the master communication device has been determined not to be operating properly, and

when there is data stored in a buffer of the failure wavelength, instructs the scheduler unit to transmit the data stored in the buffer of the failure wavelength at another wavelength, and suspends allocation of new data to the buffer of the failure wavelength.

6. The communication system according to claim 5 , wherein

the slave communication device

determines that one of the other communication devices including the subject communication device has started operating as a new master communication device in place of the master communication device that is not operating properly,

instructs the scheduler unit to resume the transmission of data at the failure wavelength, and

instructs the allocation unit to resume the allocation of new data to the buffer of the failure wavelength.

7. A non-transitory recording medium recording a communication program for causing a computer or an integrated circuit to perform processes that are performed by the communication device according to claim 1 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 10, 2023
From: TOCHINO, TAKAMITSU; UJIKAWA, HIROTAKA; NAKAMURA, HIROTAKA
To: NIPPON TELEGRAPH AND TELEPHONE CORPORATION
Reel/Frame 062328/0133 →
Continuity (1)
Related Publication 20230261744A1 · Aug 17, 2023