Patent classifications
H04B10/2931
Optical amplifiers that support gain clamping and optionally power loading
An apparatus includes an optical amplifier configured to receive an input optical signal and generate an amplified output optical signal. The optical amplifier includes multiple amplifier stages including at least a first amplifier stage and a second amplifier stage. The apparatus also includes a gain clamp configured to accumulate optical power from the first amplifier stage after an optical power level of the input optical signal drops and provide a first portion of the accumulated optical power to the first amplifier stage to clamp a gain applied by the first amplifier stage. The gain clamp is also configured to provide a second portion of the accumulated optical power to the second amplifier stage to adjust a gain applied by the second amplifier stage. The second amplifier stage is configured to amplify the second portion of the accumulated optical power.
Optical power and gain detection apparatus and method for optical amplifier in burst mode
An optical power and gain detection apparatus including multiple optical power detection circuits, an FPGA device, and a temperature detection circuit. Various optical power detection circuits include a respective independent photoelectric converter, a trans-impedance amplifier, an analog signal conditioning circuit, a filter and an analog-digital conversion chip. By improving an analog circuit, digital detection and control in an optical amplifier, the property of the FPGA device may be used to realize the detection of optical signal and gain in a burst mode, avoid increasing complicated analogue circuits, and avoid the influence caused by element inconsistency in an analogue control solution. Whether the optical signal is in a stable mode or in a burst mode, the algorithm can detect the optical power accurately and stably, with a wide application range. By strictly controlling the synchronism of ADC sampling and the delay of calculation, the amplifier gain may be calculated more accurately.
METHOD AND DEVICE FOR AMPLIFYING UPLINK LIGHT OF PASSIVE OPTICAL NETWORK, AND STORAGE MEDIUM
The present disclosure provides a method and a device for amplifying uplink light of a passive optical network, and a computer-readable storage medium. The passive optical network includes an optical network unit, an optical line terminal, and an optical amplifier provided between the optical network unit and the optical line terminal, and the method include: receiving a registration signal transmitted from the optical line terminal; determining a gain value of the optical amplifier, and performing gain value adjustment on the optical amplifier according to the determined gain value; and completing registration when an uplink optical signal transmitted to the optical line terminal through the optical amplifier reaches preset power.
Optical Power And Gain Detection Apparatus And Method For Optical Amplifier In Burst Mode
An optical power and gain detection apparatus including multiple optical power detection circuits, an FPGA device, and a temperature detection circuit. Various optical power detection circuits include a respective independent photoelectric converter, a trans-impedance amplifier, an analog signal conditioning circuit, a filter and an analog-digital conversion chip. By improving an analog circuit, digital detection and control in an optical amplifier, the property of the FPGA device may be used to realize the detection of optical signal and gain in a burst mode, avoid increasing complicated analogue circuits, and avoid the influence caused by element inconsistency in an analogue control solution. Whether the optical signal is in a stable mode or in a burst mode, the algorithm can detect the optical power accurately and stably, with a wide application range. By strictly controlling the synchronism of ADC sampling and the delay of calculation, the amplifier gain may be calculated more accurately.
Method For Realizing Precise Target Gain Control For Hybrid Fibre Amplifier, And Hybrid Fibre Amplifier
A method for realizing precise gain control for a hybrid fibre amplifier, and a hybrid fibre amplifier, in which by an erbium-doped fibre amplifier firstly outputting a constant power, a comparable source signal optical power is provided for a raman fibre amplifier of a next stage. A feedback for the gain control may be formed by comparing a source signal optical power calculated after starting pumping of the Raman fibre amplifier and a source signal optical power detected after pumping stops, thereby greatly improving gain control precision of the Raman fibre amplifier. Moreover, the erbium-doped fibre amplifier parts of all the hybrid fibre amplifiers may simultaneously output a constant optical power, and the Raman amplifier parts of all the hybrid fibre amplifiers may simultaneously start calibration, so that the time for starting operation of the entire system may be improved greatly.
OPTICAL AMPLIFIER AND METHOD OF CONTROLLING EXCITATION LIGHT
An optical amplifier includes a photodiode configured to measure power of an output light; a converter configured to convert the power of the output light into a voltage signal; and a processor configured to determine whether a difference between a level of the voltage signal and a predetermined potential is equal to or higher than a first predetermined value, change power of excitation light so that the level of the voltage signal approaches the predetermined value, when it is determined that the difference is equal to or higher than the first predetermined value, determine whether the power of the excitation light is equal to or higher than a second predetermined value, after the power of the excitation light is changed, and reduce the power of the excitation light, when it is determined that the power of the excitation light is equal to or higher than the second predetermined value.
Optical amplifier
The present embodiment relates to an optical amplifier which can perform an amplification operation equivalent to a normal operation even with an increase of dark current in a PD forming a part of a light detection circuit for monitoring signal light as an amplification object. In the optical amplifier, a detection controller performs an anomaly determination on a light detection circuit due to an increase of dark current in the PD based on a difference between temporal change amounts of a signal component of a voltage of output signal from a light receiving unit including the PD, and a voltage component in a high frequency region included in the signal component. An amplification controller can perform suitable switching of control on a drive current to a pumping light source, based on the result of the determination.
AMPLIFICATION METHOD IN A PON ACCESS NETWORK, COMPUTER PROGRAM PRODUCT, CORRESPONDING OPTICAL LINE TERMINATION DEVICE
An amplification method intended for a PON access network, which includes an OLT with multiple ports and with one bidirectional amplifier per port that is shared for the transmission downlink and uplink, at least one ODN connecting a given port of the OLT to a plurality of ONUs and defining a transmission channel, access to the transmission channel for the uplink being of TDMA type and the transmission channel for the downlink being time-shared. The method includes, for a given ODN: receiving bursts from the ONUs, modulating the gain of the amplifier in synchronicity with the received bursts.
Optical amplification apparatus, and mode division multiplexing system including optical amplification apparatus
Embodiments of an optical amplification apparatus are disclosed which include a first optical amplifier, a second optical amplifier, and a mode exchanger. The first optical amplifier is connected to an input port of the mode exchanger, and the second optical amplifier is connected to an output port of the mode exchanger. The first optical amplifier is configured to amplify optical signals carried in a plurality of transmission modes of a few-mode fiber, the plurality of transmission modes of the few-mode fiber may be grouped into N groups, each group includes two transmission modes, and N is a positive integer greater than or equal to 1. The mode exchanger is configured to exchange the two transmission modes carrying optical signals in each group. The second optical amplifier is configured to amplify the optical signals that are carried in the two transmission modes in each group and whose modes are exchanged.
AUTOMATIC GAIN CONTROL (AGC) TRAINING FOR SIDELINK POSITIONING REFERENCE SIGNALS (SL-PRS)
Disclosed are techniques for wireless communication. In an aspect, a user equipment (UE) transmits a subset of symbols of a set of symbols of a sidelink positioning reference signal (SL-PRS) resource, and transmits the set of symbols of the SL-PRS resource, including the subset of symbols, wherein the set of symbols is transmitted after the subset of symbols.