Abstract:
Verifying a set of safety equipment criteria may include receiving a first unit of data at a first computing device. The first unit of data may be received via a wireless signal between the first computing device and a set of sensing devices. A set of safety equipment that includes the set of sensing devices may be identified as the first unit of data. The set of sensing devices may be configured to transmit the first unit of data. The wireless signal between the first computing device and the set of sensing devices may be monitored and the signal strength for the wireless signal may be determined to be below a threshold value. A second computing device may be notified in response to the determining that the signal strength for the wireless signal is below the threshold value.
Abstract:
An embodiment of the invention provides a method for sending a message from a first user to a second user where an interface receives a message from the second user. A processor connected to the interface identifying one or more keywords in the message and searches an electronic database for the keyword(s) to identify one or more scripted message for the keyword(s). The electronic database includes scripted messages for each keyword in the electronic database. A communications device connected to the processor sends the identified scripted message(s) to the second user.
Abstract:
A method is provided, the method including initiating execution of a macro-transaction comprising a set of micro-transactions, wherein execution of a given micro-transaction is based at least on a set of prerequisites associated with the given micro-transaction; causing a pending state of a first micro-transaction to be stored on a database; executing the first micro-transaction; and updating the state of the first micro-transaction in the database based at least on a result returned in response to executing of the first micro-transaction. An apparatus and computer program product are also provided.
Abstract:
A system, method and computer program product for detecting data omissions between intermittently-connected devices. An example system includes a client device configured to execute client queries on a client data set, and generate client result sets. The client queries and client result sets are stored on a query queue as queued queries and queued result sets. The system includes a server device with a data omission detector and server database. The data omission detector receives the queued queries and queued result sets after detecting a network connection, executes server queries on the server database and generates server result sets. The server queries are based on the queued queries. The data omission detector compares the server result sets with queued result sets to determine if there are data omissions. Data omissions include data absent in the queued result set that is present in a server result set.
Abstract:
An embodiment of the invention provides a method for sending a message from a first user to a second user where an interface receives a message from the second user. A processor connected to the interface identifying one or more keywords in the message and searches an electronic database for the keyword(s) to identify one or more scripted message for the keyword(s). The electronic database includes scripted messages for each keyword in the electronic database. A communications device connected to the processor sends the identified scripted message(s) to the second user.
Abstract:
Mechanisms are provided for implementing a personalized health care management system. The mechanisms receive a personalized health care plan for a patient, and dynamic patient monitoring data from patient monitoring devices associated with the patient. The mechanisms analyze the dynamic patient monitoring data to identify at least one pattern of dynamic patient monitoring data representing a habit of the patient. The mechanisms generate desired pattern data based on results of the analysis. The desired pattern data represents at least one desired habit for the patient. The mechanisms determine at least one communication to output to the patient via a patient computing device or patient communication device to elicit conformance of the patient with the at least one desired habit based on the generated desired pattern data and the personalized health care plan. The mechanisms output the at least one communication to the patient computing device or patient communication device.
Abstract:
An embodiment of the invention provides a method for sending a message from a first user to a second user where an interface receives a message from the second user. A processor connected to the interface identifying one or more keywords in the message and searches an electronic database for the keyword(s) to identify one or more scripted message for the keyword(s). The electronic database includes scripted messages for each keyword in the electronic database. A communications device connected to the processor sends the identified scripted message(s) to the second user.
Abstract:
A system, method and computer program product for detecting data omissions between intermittently-connected devices. An example system includes a client device configured to execute client queries on a client data set, and generate client result sets. The client queries and client result sets are stored on a query queue as queued queries and queued result sets. The system includes a server device with a data omission detector and server database. The data omission detector receives the queued queries and queued result sets after detecting a network connection, executes server queries on the server database and generates server result sets. The server queries are based on the queued queries. The data omission detector compares the server result sets with queued result sets to determine if there are data omissions. Data omissions include data absent in the queued result set that is present in a server result set.
Abstract:
A system, method and computer program product for detecting data omissions between intermittently-connected devices. An example system includes a client device configured to execute client queries on a client data set, and generate client result sets. The client queries and client result sets are stored on a query queue as queued queries and queued result sets. The system includes a server device with a data omission detector and server database. The data omission detector receives the queued queries and queued result sets after detecting a network connection, executes server queries on the server database and generates server result sets. The server queries are based on the queued queries. The data omission detector compares the server result sets with queued result sets to determine if there are data omissions. Data omissions include data absent in the queued result set that is present in a server result set.
Abstract:
A system, method and computer program product for composing persistent object instances that link resources across multiple, disparate systems. An example method includes associating resources with namespace-URLs and object instances. One of the namespace-URLs is designated as primary namespace-URL. A web-based object API is provided through which the object instance can be accessed. The web-based object API uses the primary namespace-URL as an identifier of the object instance.