Patent classifications
H04B10/29
Optical network system, optical transmission device, and failure occurrence section determination method
An optical network system includes: a plurality of optical transmission devices, each includes a transmitting unit configured to superimpose, on a main signal to be transmitted, a monitoring signal of a different wavelength from wavelengths of other optical transmission devices, the wavelength differing from wavelengths for other optical transmission devices in the optical network system, and an extraction unit configured to extract monitoring signals from main signals received from the other optical transmission devices, wherein a failure occurrence section where a communication failure occurs is determined, based on the monitoring signals extracted by the extraction unit, among transmission sections between the respective optical transmission devices.
Methods, devices, and systems for integration, beam forming and steering of ultra-wideband, wireless optical communication devices and systems
Disclosed herein are methods, devices, and system for beam forming and beam steering within ultra-wideband, wireless optical communication devices and systems. According to one embodiment, a free space optical (FSO) communication apparatus is disclosed. The FSO communication apparatus includes an array of optical sources wherein each optical source of the array of optical sources is individually controllable and each optical source configured to have a transient response time of less than 500 picoseconds (ps).
Methods, devices, and systems for integration, beam forming and steering of ultra-wideband, wireless optical communication devices and systems
Disclosed herein are methods, devices, and system for beam forming and beam steering within ultra-wideband, wireless optical communication devices and systems. According to one embodiment, a free space optical (FSO) communication apparatus is disclosed. The FSO communication apparatus includes an array of optical sources wherein each optical source of the array of optical sources is individually controllable and each optical source configured to have a transient response time of less than 500 picoseconds (ps).
Multi-function beacon for optical communications laser relay
A laser relay module in a free space optical communication network includes: a beacon source for generating an optical beacon signal for aligning a communication channel of a source optical node to a communication channel of a receiving optical node; a beacon inserter for encoding the optical beacon signal with switching information; a telescope for transmitting the encoded optical beacon signal to the receiving optical node; a beacon detector for detecting received switching information from the modulated optical beacon signal, wherein the receiving optical node uses the encoded optical beacon signal to align communication channel of the receiving optical node with communication channel of the source optical node; and a processor for using the detected switching information to change configuration of an optical switch matrix to direct received data to a next optical node in the free space optical communication network.
Multi-function beacon for optical communications laser relay
A laser relay module in a free space optical communication network includes: a beacon source for generating an optical beacon signal for aligning a communication channel of a source optical node to a communication channel of a receiving optical node; a beacon inserter for encoding the optical beacon signal with switching information; a telescope for transmitting the encoded optical beacon signal to the receiving optical node; a beacon detector for detecting received switching information from the modulated optical beacon signal, wherein the receiving optical node uses the encoded optical beacon signal to align communication channel of the receiving optical node with communication channel of the source optical node; and a processor for using the detected switching information to change configuration of an optical switch matrix to direct received data to a next optical node in the free space optical communication network.
Home automation controller and system for optically safely linking AC voltage lines with low voltage DC lines
At least two cascaded chains of intelligent support boxes linked by optical cable provide the needed elements to link the electric AC power line and low voltage DC power lines to the many known outlets and switches (wiring devices) and their loads be it AC or DC operated, with the AC and DC lines are separately drawn through separated conduits and ducts safely and accurately controlled by an home controller and/or via a command converter and a distributor.
Home automation controller and system for optically safely linking AC voltage lines with low voltage DC lines
At least two cascaded chains of intelligent support boxes linked by optical cable provide the needed elements to link the electric AC power line and low voltage DC power lines to the many known outlets and switches (wiring devices) and their loads be it AC or DC operated, with the AC and DC lines are separately drawn through separated conduits and ducts safely and accurately controlled by an home controller and/or via a command converter and a distributor.
FREE SPACE OPTICAL COMMUNICATION TERMINAL WITH ACTUATOR SYSTEM AND OPTICAL RELAY SYSTEM
Embodiments relate to a local free space optical (FSO) terminal that transmits and receives optical beams. The FSO terminal includes a fore optic, an optical relay system, and an actuator system. The fore optic focuses a receive (Rx) beam to a Rx spot on a focal plane of the fore optic. The focal plane also includes a Tx spot formed by a transmit (Tx) optical beam, however the Rx and Tx spots are laterally separated at the focal plane. The optical relay system creates a conjugate spot for the Rx or Tx spot so that the Rx and Tx fibers may be axially separated. Due to the axial separation, the actuator system can adjust a lateral separation of the Rx and Tx fibers to account for point ahead of the local FSO communication terminal.
FREE SPACE OPTICAL COMMUNICATION TERMINAL WITH ACTUATOR SYSTEM AND OPTICAL RELAY SYSTEM
Embodiments relate to a local free space optical (FSO) terminal that transmits and receives optical beams. The FSO terminal includes a fore optic, an optical relay system, and an actuator system. The fore optic focuses a receive (Rx) beam to a Rx spot on a focal plane of the fore optic. The focal plane also includes a Tx spot formed by a transmit (Tx) optical beam, however the Rx and Tx spots are laterally separated at the focal plane. The optical relay system creates a conjugate spot for the Rx or Tx spot so that the Rx and Tx fibers may be axially separated. Due to the axial separation, the actuator system can adjust a lateral separation of the Rx and Tx fibers to account for point ahead of the local FSO communication terminal.
Optical branching/insertion device, optical branching/insertion method and recording medium
[Objective] To make it possible to effectively relay remaining signals even when any input failure occurs on a propagation path. [Solution] Provided is an optical branching/insertion device including: a trunk-side detection/branching unit for detecting a failure of a trunk-side optical signal inputted from the trunk side and outputting it as a first detection result, and for splitting the trunk-side optical signal and sending the split signals respectively to the trunk side and to the branch side; a branch-side detection unit for detecting a failure of a branch-side optical signal inserted from the branch side and outputting it as a second detection result, and for sending the branch-side optical signal as an insertion signal; an insertion signal adjustment unit for outputting the insertion signal with its pass-through degree having been adjusted on the basis of the first detection result, as a first adjusted signal; a trunk signal adjustment unit for outputting the trunk-side optical signal with its pass-through degree having been adjusted on the basis of the first detection result, as a second adjusted signal; and a combining/output unit for outputting, to the outside, an optical signal into which the first adjusted signal and the second adjusted signal are combined together, as a trunk-side output optical signal.