Abstract:
A method of monitoring a plurality of turbomachines is disclosed herein. In embodiments, the method includes a fleet data system receiving first event data from a first monitoring connection system and second event data from a second monitoring connection system. The method also includes the fleet data system determining from the first event data and the second event data whether an event has occurred. The method further includes the fleet data system issuing an alert when the fleet data system has determined that the event has occurred, the alert including an event name, an event status, and a timestamp related to when the event occurred.
Abstract:
A method of monitoring a gas turbine engine is disclosed herein. The method includes periodically receiving sensor data for the gas turbine engine at a monitoring device from a monitoring system server. The method also includes the monitoring device determining whether the tags for each group of a plurality of groups are in the sensor data and correlating the tags with the groups. The method further includes displaying one of the groups on an output display of the monitoring device including the tag name and the sensor value for each tag correlated with the group displayed.
Abstract:
A method of monitoring a plurality of turbomachines is disclosed herein. The method includes a fleet data system periodically receiving first event data from a first monitoring connection system and second event data from a second monitoring connection system. The method also includes the fleet data system storing the first event data and the second event data related to events that have occurred over a predetermined timeframe and sending at least the event data related to the events from the first event data to a monitoring device. The event data includes an event name, an event status, and a timestamp related to when the event occurred.
Abstract:
A system and method is disclosed herein for monitoring and alerting on equipment errors. A server may receive data on a periodic basis. The data is indicative of operational states of at least one machine. The server may then analyze a quality issue associated with the received data over an alert period greater than one day, determine a type of the quality issue, and generate a warning message including an indication of the quality issue and the type of the quality issue.
Abstract:
A method of monitoring a plurality of turbomachines is disclosed herein. In embodiments, the method includes a fleet data system receiving first event data from a first monitoring connection system and second event data from a second monitoring connection system. The method also includes the fleet data system determining from the first event data and the second event data whether an event has occurred. The method further includes the fleet data system issuing an alert when the fleet data system has determined that the event has occurred, the alert including an event name, an event status, and a timestamp related to when the event occurred.
Abstract:
A method for monitoring machines is provided. According to the method, a computer server determines a location of at least one machine. The complier server transmits a request to an external source for ambient conditions associated with the location of the at least one machine. The computer server receives a response indicative of the ambient conditions associated with the location of the at least one machine. In addition, the computer server evaluates operation of the at least one machine based in part on the received ambient conditions.