Status Monitoring Systems and Methods for Uninterruptible Power Supplies
A power supply system for use in a communications system comprises a power supply, a cable interface module, and a processor. The power supply is connected to a local supply, a utility supply, and the communications system. The cable interface module detects an FBC signal associated with the communications system. The processor executes a monitoring process in which the processor monitors the FBC signal for characteristics associated with at least one anomaly and generates a trap signal when an anomaly is detected.
1 . A power supply system for use in a communications system comprising:
a power supply connected to a local supply, a utility supply, and the communications system;
a cable interface module for detecting an FBC signal associated with the communications system; and
a processor that executes a monitoring process in which the processor monitors the FBC signal for characteristics associated with at least one anomaly, and generates a trap signal when an anomaly is detected.
2 . A power supply system as recited in claim 1 , in which, when an anomaly is detected, the processor further stores data associated with the FBC signal associated with the anomaly as anomaly FBC data.
3 . A power supply system as recited in claim 1 , in which the processor monitors the FBC signal for characteristics associated with a plurality of anomalies.
4 . A power supply system as recited in claim 1 , in which the processor monitors the FBC signal for characteristics associated with at least one anomaly by comparing data associated with the FBC signal with at least one baseline level.
5 . A power supply system as recited in claim 4 , in which processor monitors the FBC signal for characteristics associated with at least one anomaly by:
determining whether the FBC signal is greater than the sum of the at least one baseline level and a first offset value; and
determining whether the FBC signal is less than the at least one baseline level less a second offset value.
6 . A power supply system as recited in claim 4 , in which processor compares the data associated with the FBC signal with first and second baseline levels by:
determining whether the FBC signal is greater than the first baseline level; and
determining whether the FBC signal is less than a second baseline level.
7 . A power supply as recited in claim 1 , in which the processor monitors the FBC signal for characteristics associated with at least one anomaly by comparing the FBC signal with at least one other FBC signal.
8 . A power supply as recited in claim 1 , in which the at least one other FBC signal is detected at another point in time than the FBC signal.
9 . A power supply as recited in claim 1 , in which the at least one other FBC signal is detected at another location than the FBC signal.
10 . A power supply as recited in claim 1 , in which the processor further executes a base line setup process in which the processor determines at least one baseline level.
11 . A power supply as recited in claim 10 , in which the processor determines the at least one baseline level using a watermark process.
12 . A power supply as recited in claim 10 , in which the processor allows a user to set the at least one baseline level.
13 . A method of providing power to a communications system comprising the steps of:
connecting a power supply to a local supply, a utility supply, and the communications system;
arranging a cable interface module to detect an FBC signal associated with the communications system;
monitoring the FBC signal for characteristics associated with at least one anomaly; and
generating a trap signal when an anomaly is detected.
14 . A method as recited in claim 13 , further comprising the step of storing data associated with the FBC signal associated with the anomaly as anomaly FBC data when an anomaly is detected.
15 . A method as recited in claim 13 , in which the step of monitoring the FBC signal for characteristics associated with at least one anomaly comprises the step of comparing data associated with the FBC signal with at least one baseline level.
16 . A method as recited in claim 15 , in which the step of monitoring the FBC signal for characteristics associated with at least one anomaly comprises the steps of:
determining whether the FBC signal is greater than the sum of the at least one baseline level and a first offset value; and
determining whether the FBC signal is less than the at least one baseline level less a second offset value.
17 . A method as recited in claim 15 , in which the step of comparing the data associated with the FBC signal with first and second baseline levels comprises the steps of:
determining whether the FBC signal is greater than the first baseline level; and
determining whether the FBC signal is less than a second baseline level.
18 . A method as recited in claim 17 , further comprising the step of executing a base line setup process in which the processor determines at least one baseline level.
19 . A method as recited in claim 17 , in which the step of determining the at least one baseline level employs a watermark process.
20 . A method as recited in claim 17 , in which the step of determining the at least one baseline level comprises the step of allowing a user to set the at least one baseline level.