Signal detection for optical communication network
In at least some example embodiments an optical line terminal (OLT) may include processing circuitry configured to, convert an optical signal received from an optical network terminal (ONT) to a digital signal; and monitor the digital signal for a convergence event, the digital signal representing an optical signal received from the ONT and the convergence event being an event associated with the ONT.
1. An optical line terminal (OLT) comprising:
processing circuitry configured to,
monitor a digital signal for a convergence event, the digital signal representing an optical signal received from an optical network terminal (ONT), the convergence event being an event associated with the ONT, the processing circuitry configured to monitor the digital signal for the convergence event by one of (i) detecting a level of randomness in a word included in the digital signal based on at least the digital signal, a delayed version of the digital signal and a first threshold and (ii) detecting a level of disparity of the digital signal based on at least a sum of the word included in the digital signal and a second threshold,
reset one or more components of the processing circuitry in response to detection of the convergence event, and
process, via the one or more components, an upstream burst of data associated with the digital signal after resetting the one or more components.
2. The OLT of claim 1 , wherein the processing circuitry comprises:
a clock data recover (CDR) circuit configured to perform a lock operation to align a phase of the digital signal with a reference clock associated with the OLT, and
a virtual signal detector configured to detect the convergence event prior to completion of the lock operation.
3. The OLT of claim 1 , wherein the OLT further comprises:
an optical module configured to,
receive the optical signal, the optical module including at least an optical receiver having a detection threshold associated therewith, the OLT configured to adjust, during a settling time, the detection threshold based on the optical signal, and wherein
the processing circuitry is configured to detect the convergence event prior to an expiration of the settling time.
4. The OLT of claim 1 , wherein the processing circuitry is configured to monitor the digital signal in one of discrete chunks of data and a moving average of the data.
5. The OLT of claim 4 , wherein the discrete chucks of data are each 32 bits.
6. The OLT of claim 4 , wherein the processing circuitry further comprises:
a serial/deserializer configured to convert the data within the digital signal from serial data to parallel data.
7. The OLT of claim 1 , wherein the processing circuitry is configured to one of (i) separate random intra-burst data from signal data and (ii) detect whether the ONT is rouge based on detection of the convergence event.
8. The OLT of claim 7 , wherein the signal data is a preamble of the upstream burst from the ONT.
9. A method of operating an optical line terminal (OLT), the method comprising:
monitoring a digital signal for a convergence event, the digital signal representing an optical signal received from an optical network terminal (ONT), the convergence event being an event associated with the ONT, the monitoring including one of (i) detecting a level of randomness in a word included in the digital signal based on at least the digital signal, a delayed version of the digital signal and a first threshold and (ii) detecting a level of disparity of the digital signal based on at least a sum of the word included in the digital signal and a second threshold;
resetting one or more components in response to detection of the convergence event; and
processing, via the one or more components, an upstream burst of data associated with the digital signal after resetting the one or more components.
10. The method of claim 9 , wherein the monitoring comprises:
performing, via a clock data recover (CDR) circuit, a lock operation to align a phase of the digital signal with a reference clock associated with the OLT, and
detecting, via a virtual signal detector, the convergence event prior to completion of the lock operation.
11. The method of claim 9 , further comprising:
receiving, via an optical module, the optical signal, the optical module including at least an optical receiver having a detection threshold associated therewith, the OLT configured to adjust, during a settling time, the detection threshold based on the optical signal, and wherein
the monitoring detects the convergence event prior to an expiration of the settling time.
12. The method of claim 9 , wherein the monitoring monitors the digital signal in one of discrete chunks of data and a moving average of the data.
13. The method of claim 9 , wherein the monitoring monitors the digital signal for the convergence event by detecting one of (i) a level of randomness in the digital signal and (ii) a level of disparity of the digital signal.
14. A non-transitory computer readable medium storing instructions that, when executed by processing circuitry associated with an optical line terminal (OLT), configures the processing circuitry to,
monitor a digital signal for a convergence event, the digital signal representing an optical signal received from an optical network terminal (ONT), the convergence event being an event associated with the ONT, the processing circuitry configured to monitor the digital signal for the convergence event by one of (i) detecting a level of randomness in a word included in the digital signal based on at least the digital signal, a delayed version of the digital signal and a first threshold and (ii) detecting a level of disparity of the digital signal based on at least a sum of the word included in the digital signal and a second threshold,
reset one or more components of the processing circuitry in response to detection of the convergence event, and
process, via the one or more components, an upstream burst of data associated with the digital signal after resetting the one or more components.
15. The non-transitory computer readable medium of claim 14 , wherein the instructions, when executed, configure the processing circuitry to,
perform, via a clock data recover (CDR) circuit, a lock operation to align a phase of the digital signal with a reference clock associated with the OLT, and
detect, via a virtual signal detector, the convergence event prior to completion of the lock operation.
16. The non-transitory computer readable medium of claim 14 , wherein the instructions, when executed, configure the processing circuitry to,
receive, via an optical module, the optical signal, the optical module including at least an optical receiver having a detection threshold associated therewith, the OLT configured to adjust, during a settling time, the detection threshold based on the optical signal, and wherein
the processing circuitry is configured to detect the convergence event prior to an expiration of the settling time.
17. The non-transitory computer readable medium of claim 14 , wherein the instructions, when executed, configure the processing circuitry to,
monitor the digital signal for the convergence event by detecting one of (i) a level of randomness in the digital signal and (ii) a level of disparity of the digital signal.