摘要:
Methods and reconfigurable systems are provided for monitoring the health of a complex system. The system may include, but is not limited to a computing node including a memory and a processor. The processor can be configured to receive a plurality of standardized executable application modules, each standardized executable application module containing instructions to perform one of a plurality of different standardized functions, receive a binary file comprising instructions, which when loaded into memory by the processor, configure the standardized executable application modules and configure the memory by creating at least one data structure in the memory used by at least one of the plurality of standardized executable application modules.
摘要:
Methods and reconfigurable systems are provided for monitoring the health of a complex system. The system may include, but is not limited to a computing node including a memory and a processor. The processor can be configured to receive a plurality of standardized executable application modules, each standardized executable application module containing instructions to perform one of a plurality of different standardized functions, receive a binary file comprising instructions, which when loaded into memory by the processor, configure the standardized executable application modules and configure the memory by creating at least one data structure in the memory used by at least one of the plurality of standardized executable application modules.
摘要:
An embodiment of a method for generating a binary file includes receiving information defining an entity that forms a portion of loadable diagnostics information, generating metadata defining a location within a binary file where the entity is to be located, and generating the binary file to include the metadata and the entity stored at the location. Additional embodiments include an aircraft diagnostic system and a method for the diagnostics system to access information within a binary file. The diagnostics system includes data storage and an accessor module. The data storage is configured to store the binary file, which includes metadata and an entity stored at a location within the binary file, where the metadata defines the location of the entity. The accessor module is configured to evaluate the metadata to make a determination of the location, and to access the entity within the binary file based on the determination.
摘要:
An embodiment of a method for generating a binary file includes receiving information defining an entity that forms a portion of loadable diagnostics information, generating metadata defining a location within a binary file where the entity is to be located, and generating the binary file to include the metadata and the entity stored at the location. Additional embodiments include an aircraft diagnostic system and a method for the diagnostics system to access information within a binary file. The diagnostics system includes data storage and an accessor module. The data storage is configured to store the binary file, which includes metadata and an entity stored at a location within the binary file, where the metadata defines the location of the entity. The accessor module is configured to evaluate the metadata to make a determination of the location, and to access the entity within the binary file based on the determination.
摘要:
Systems and Methods are provided for coordinating computing functions to accomplish a task. The system includes a plurality of standardized executable application modules (SEAMs), each of which is configured to execute on a processor to provide a unique function and to generate an event associated with its unique function. The system includes a configuration file that comprises a dynamic data store (DDS) and a static data store (SDS). The DDS includes an event queue and one or more response queues. The SDS includes a persistent software object that is configured to map a specific event from the event queue to a predefined response record and to indicate a response queue into which the predefined response record is to be placed. The system further includes a workflow service module, the work flow service module being configured to direct communication between the SDS, the DDS and each of the plurality of SEAMs.
摘要:
Systems and methods are provided for customizing workflow in a condition based health maintenance (“CBM”) system computing node. The computerized method comprises identifying a first standardized executable application module (“SEAM”), wherein the first SEAM is configured to generate a first event associated with particular data being processed by the first SEAM and identifying a second SEAM, wherein the second SEAM is configured to generate a subsequent event associated with the particular data processed by the first SEAM. The computerized method further comprises creating a quasi-state machine associating a unique responses to the first event and associating a unique responses to the subsequent event, and installing the quasi-state machine into the SDS of the computing node from which the workflow service state machine retrieves the one or more unique responses from the quasi-state machine to the first event for processing by the second SEAM to produce the subsequent second event.
摘要:
Systems and methods are provided for customizing workflow in a condition based health maintenance (“CBM”) system computing node. The computerized method comprises identifying a first standardized executable application module (“SEAM”), wherein the first SEAM is configured to generate a first event associated with particular data being processed by the first SEAM and identifying a second SEAM, wherein the second SEAM is configured to generate a subsequent event associated with the particular data processed by the first SEAM. The computerized method further comprises creating a quasi-state machine associating a unique responses to the first event and associating a unique responses to the subsequent event, and installing the quasi-state machine into the SDS of the computing node from which the workflow service state machine retrieves the one or more unique responses from the quasi-state machine to the first event for processing by the second SEAM to produce the subsequent second event.
摘要:
Systems and Methods are provided for coordinating computing functions to accomplish a task. The system includes a plurality of standardized executable application modules (SEAMs), each of which is configured to execute on a processor to provide a unique function and to generate an event associated with its unique function. The system includes a configuration file that comprises a dynamic data store (DDS) and a static data store (SDS). The DDS includes an event queue and one or more response queues. The SDS includes a persistent software object that is configured to map a specific event from the event queue to a predefined response record and to indicate a response queue into which the predefined response record is to be placed. The system further includes a workflow service module, the work flow service module being configured to direct communication between the SDS, the DDS and each of the plurality of SEAMs.
摘要:
Systems and Methods are provided for coordinating computing functions to accomplish a task. The system includes a plurality of standardized executable application modules (SEAMs), each of which is configured to execute on a processor to provide a unique function and to generate an event associated with its unique function. The system includes a configuration file that comprises a dynamic data store (DDS) and a static data store (SDS). The DDS includes an event queue and one or more response queues. The SDS includes a persistent software object that is configured to map a specific event from the event queue to a predefined response record and to indicate a response queue into which the predefined response record is to be placed. The system further includes a workflow service module, the work flow service module being configured to direct communication between the SDS, the DDS and each of the plurality of SEAMs.
摘要:
Systems, methods are provided for augmenting functions of a computing device by a controlling computing device. The method comprises receiving a command and a data matrix from the controlling computing device. The data matrix contains data that when installed enables the subordinate computing device to accomplish additional functions. The method further comprises calling a first SEAM by the computing device to receive the command and the data matrix, calling a second SEAM by the computing device to create a SDS extension in its volatile memory, and populating the one or more volatile extensions with the data from the data matrix.