IP Library Granted Patent US 10,581,518
Granted Patent B2
US 10,581,518 · App. 15/920,847 · Granted Mar 3, 2020

Optical transmission/reception device, optical communication system, and optical communication method

Inventor: Ryota Abe (Tokyo, JP)
Assignee: NEC Corporation
H04B10/03H04B10/296H04B10/80H04B10/85H04J14/021H04J14/0221H04J14/02
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,581,518
App. No.
15/920,847
Granted
Mar 3, 2020
Kind
B2
Abstract

[Problem] To provide an optical transmission/reception device, an optical communication system, an optical communication method, and a program which are capable of securing the confidentiality of information included in an optical signal even when the optical signal is transferred to a device that is not an original transmission destination device. [Solution] This optical transmission/reception device is provided with: a wave separation unit for receiving a wavelength-multiplexed optical signal and separating the same into a plurality of optical signals; a plurality of reception units for receiving each of the plurality of optical signals separated by the wave separation unit; a plurality of output units for outputting optical signals differing in wavelength from each other; a control unit for requesting, in response to the inclusion in the received wavelength-multiplexed optical signal of an optical signal to which a prescribed process has been applied, that a prescribed change be applied to the optical signal outputted by at least one of the plurality of output units; and a wave combining unit for combining the plurality of optical signals outputted from the plurality of output units and outputting the combined signal.

Claims (50)

1. An optical transmission device comprising:

a transponder configured to output an optical signal; and

a multiplexer configured to output a multiplexed optical signal including the optical signal to a transmission path, wherein

the transponder is further configured to, in response to a failure in the transmission path, apply a process to the optical signal.

2. The optical transmission device according to claim 1 , further comprising:

a controller configured to send a processing request to the transponder, wherein

the controller is further configured to:

receive a control signal in response to the failure in the transmission path, and

send the processing request after receiving the control signal, and

the transponder is further configured to, in response to the processing request from the controller, apply the process to the optical signal.

3. The optical transmission device according to claim 1 , further comprising:

a controller configured to send a processing request to the transponder, wherein

the controller is further configured to:

receive a control signal in response to switching a destination of the optical signal, and

send the processing request after receiving the control signal, and

the transponder is further configured to, in response to the processing request from the controller, apply the process to the optical signal.

4. The optical transmission device according to claim 1 , wherein, in response to the failure in the transmission path, the transponder is further configured to add a predetermined pattern to the optical signal.

5. The optical transmission device according to claim 1 , wherein, in response to the failure in the transmission path, the transponder is further configured to scramble the optical signal.

6. The optical transmission device according to claim 1 , wherein, in response to the failure in the transmission path, the transponder is further configured to degrade optical properties of the optical signal.

7. An optical communication system comprising:

an optical transmission device configured to output a multiplexed optical signal; and

an optical reception device configured to receive the multiplexed optical signal, wherein the optical transmission device comprises:

a transponder configured to output an optical signal; and

a multiplexer configured to output the multiplexed optical signal including the optical signal to a transmission path, wherein

the transponder is further configured to, in response to a failure in the transmission path, apply a process to the optical signal.

8. The optical communication system according to claim 7 , further comprising:

a controller configured to send a processing request to the transponder, wherein

the controller is further configured to:

receive a control signal in response to the failure in the transmission path; and

send the processing request after receiving the control signal, and

the transponder is further configured to, in response to the processing request from the controller, apply the process to the optical signal.

9. The optical communication system according to claim 7 , further comprising:

a controller configured to send a processing request to the transponder, wherein

the controller is further configured to:

receive a control signal in response to switching a destination of the optical signal; and

send the processing request after receiving the control signal, and

the transponder is further configured to, in response to the processing request from the controller, apply the process to the optical signal.

10. The optical communication system according to claim 7 , wherein, in response to the failure in the transmission path, the transponder is further configured to add a predetermined pattern to the optical signal.

11. The optical communication system according to claim 7 , wherein, in response to the failure in the transmission path, the transponder is further configured to scramble the optical signal.

12. The optical communication system according to claim 7 , wherein, in response to the failure in the transmission path, the transponder is further configured to degrade optical properties of the optical signal.

13. An optical communication method performed inside an optical transmission device, the optical communication method comprising:

generating an optical signal;

applying a process to the optical signal in response to a failure in a transmission path;

outputting a multiplexed optical signal including the optical signal to the transmission path;

receiving a control signal in response to switching a destination of the optical signal;

sending a processing request after receiving the control signal; and

applying the process to the optical signal in response to the processing request.

14. The optical communication method according to claim 13 , further comprising, in response to the failure in the transmission path, adding a predetermined pattern to the optical signal.

15. The optical communication method according to claim 13 , further comprising, in response to the failure in the transmission path, scrambling the optical signal.

16. The optical communication method according to claim 13 , further comprising, in response to the failure in the transmission path, degrading optical properties of the optical signal.

Assignments (4)
CORRECTIVE ASSIGNMENT TO CORRECT THE APPLICATION AND PATENT NUMBERS FOR PATENT NUMBERS 10924188, 10581518, 10200117 AND 12009865, WHICH WERE ERRONEOUSLY RECORDED AS APPLICATION NUMBERS PREVIOUSLY RECORDED ON REEL 70575 FRAME 77. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Nov 13, 2025
From: IP WAVE PTE. LTD.
To: PLS XLIV LLC
Reel/Frame 073349/0966 →
CHANGE OF NAME Recorded Oct 1, 2025
From: PLS XLIV LLC
To: RADIANT PATENTS LLC
Reel/Frame 072987/0619 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 3, 2024
From: NEC ASIA PACIFIC PTE LTD.
To: IP WAVE PTE. LTD.
Reel/Frame 068783/0632 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 21, 2024
From: NEC CORPORATION
To: NEC ASIA PACIFIC PTE LTD.
Reel/Frame 066867/0886 →