IP Library Granted Patent US 9,906,381
Granted Patent B2
US 9,906,381 · App. 14/710,020 · Granted Feb 27, 2018

Digital process management system

Inventor: Vinaykumar S. Mummigatti (Charlotte, NC)
Assignee: Bank of America Corporation
H04L12/66H04L41/145H04L41/5054H04L41/5096
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Quick Facts
Patent No.
US 9,906,381
App. No.
14/710,020
Granted
Feb 27, 2018
Kind
B2
Abstract

According to one embodiment, a system for digital process management comprises a memory and a processor communicatively coupled to the memory. The memory is operable to store input data, output data, and a process model, each associated with a digital process management system. The processor is operable to determine the process model based upon user input, wherein the process model comprises a set of rules, determine the input data based upon data received from a data source, and determine whether to initiate the process model based upon the input data. The system is further operable to execute the process model by determining a state of a process, determining an activity based upon the state and the set of rules, executing the activity, determining results data, and determining the output data based upon the results data. The system is further operable to communicate the output data to the memory.

Claims (107)

1. A system, comprising:

a memory operable to store:

input data associated with at least one digital process management system (DPMS);

output data associated with the at least one DPMS; and

a process model associated with the at least one DPMS; and

a processor communicatively coupled to the memory and operable to:

determine the process model based at least in part upon input received from a user, wherein the process model comprises a set of rules;

determine the input data based at least in part upon data received from a data source;

determine, based on the input data, that a device has passed in or out of a location;

determine, based on the determination that the device has passed in or out of the location, whether to initiate the process model;

execute the process model, wherein executing the process model comprises:

determining a state of a process;

communicating an alert to the device, wherein the alert comprises the determined state and a signal to collate data;

determining an activity based at least in part upon the state of the process and the set of rules;

executing the activity; and

determining results data, wherein the results data is based at least in part upon a result of the executed activity;

determine whether the activity was successful or unsuccessful;

modify the process model based on whether the activity was successful or unsuccessful and on the input received from the user;

determine the output data, wherein the output data is based at least in part upon the results data; and

communicate the output data to the memory.

2. The system of claim 1 , wherein the process model is executed within a single Internet-connected device.

3. The system of claim 1 , wherein the process model is executed across a plurality of Internet-connected devices, wherein the plurality of Internet-connected devices are communicatively coupled to one another.

4. The system of claim 1 , wherein:

the process model is executed within a gateway;

the gateway is communicatively coupled to one or more Internet-connected devices;

the gateway comprises one of a wired router, wireless router, server, tablet computer, laptop computer, desktop computer, and smartphone; and

the input data is determined within the gateway, based at least in part upon data received from the one or more Internet-connected devices, wherein the data from the one or more Internet-connected devices is based at least in part upon the data from the data source.

5. The system of claim 1 , wherein the processor is further operable to offer, cease to offer, or modify one of a product and a service, based at least in part upon the output data.

6. The system of claim 1 , wherein the processor is further operable to modify the process model based at least in part upon the results data.

7. The system of claim 1 , wherein:

the memory is further operable to store:

federated input data associated with the at least one DPMS;

federated output data associated with the at least one DPMS; and

a federated process model associated with the at least one DPMS; and

the processor is further operable to:

determine the federated process model based at least in part upon the output data and input received from an enterprise, wherein:

the federated process model comprises a second set of rules; and

the enterprise comprises an entity associated with the federated process model;

determine the federated input data based at least in part upon the output data;

determine, based at least in part upon the federated input data, whether to initiate the process model;

execute the federated process model, wherein executing the federated process model comprises:

determining a state of a second process;

determining a second activity based at least in part upon the state of the second process and the second set of rules;

executing the second activity;

determining federated results data, wherein the federated results data is based at least in part upon a result of the executed second activity; and

determining the federated output data, wherein the federated output data is based at least in part upon the federated results data; and

communicate the federated output data to the memory.

8. One or more non-transitory computer-readable media comprising logic, the logic when executed by one or more processors operable to perform operations comprising:

storing input data associated with at least one digital process management system (DPMS);

storing output data associated with the at least one DPMS;

storing a process model associated with the at least one DPMS;

determining the process model based at least in part upon input received from a user, wherein the process model comprises a set of rules;

determining the input data based at least in part upon data received from a data source;

determining, based on the input data, that a device has passed in or out of a location;

determining, based on the determination that the device has passed in or out of the location, whether to initiate the process model;

executing the process model, wherein executing the process model comprises:

determining a state of a process;

communicating an alert to the device, wherein the alert comprises the determined state and a signal to collate data;

determining an activity based at least in part upon the state of the process and the set of rules;

executing the activity; and

determining results data, wherein the results data is based at least in part upon a result of the executed activity;

determining whether the activity was successful or unsuccessful;

modifying the process model based on whether the activity was successful or unsuccessful and on the input received from the user;

determining the output data, wherein the output data is based at least in part upon the results data; and

communicating the output data to the memory.

9. The media of claim 8 , wherein the process model is executed within a single Internet-connected device.

10. The media of claim 8 , wherein the process model is executed across a plurality of Internet-connected devices, wherein the plurality of Internet-connected devices are communicatively coupled to one another.

11. The media of claim 8 , wherein:

the process model is executed within a gateway;

the gateway is communicatively coupled to one or more Internet-connected devices;

the gateway comprises one of a wired router, wireless router, server, tablet computer, laptop computer, desktop computer, and smartphone; and

the input data is determined within the gateway, based at least in part upon data received from the one or more Internet-connected devices, wherein the data from the one or more Internet-connected devices is based at least in part upon the data from the data source.

12. The media of claim 8 , wherein the media is further operable when executed to perform operations comprising:

offering, ceasing to offer, or modifying one of a product and a service, based at least in part upon the output data.

13. The media of claim 8 , wherein the media is further operable when executed to perform operations comprising:

modifying the process model based at least in part upon the results data.

14. A method, comprising:

storing, by a memory:

input data associated with at least one digital process management system (DPMS);

output data associated with the at least one DPMS; and

a process model associated with the at least one DPMS;

determining, by a processor, the process model based at least in part upon input received from a user, wherein the process model comprises a set of rules;

determining the input data based at least in part upon data received from a data source;

determining, based on the input data, that a device has passed in or out of a location;

determining, based on the determination that the device has passed in or out of the location, whether to initiate the process model;

executing, by the processor, the process model, wherein executing the process model comprises:

determining a state of a process;

communicating an alert to the device, wherein the alert comprise the determined state and a signal to collate data;

determining an activity based at least in part upon the state of the process and the set of rules;

executing the activity; and

determining results data, wherein the results data is based at least in part upon a result of the executed activity;

determining whether the activity was successful or unsuccessful;

modifying the process model based on whether the activity was successful or unsuccessful and on the input received from the user;

determining the output data, wherein the output data is based at least in part upon the results data; and

communicating the output data to the memory.

15. The method of claim 14 , wherein the process model is executed within a single Internet-connected device.

16. The method of claim 14 , wherein the process model is executed across a plurality of Internet-connected devices, wherein the plurality of Internet-connected devices are communicatively coupled to one another.

17. The method of claim 14 , wherein:

the process model is executed within a gateway;

the gateway is communicatively coupled to one or more Internet-connected devices;

the gateway comprises one of a wired router, wireless router, server, tablet computer, laptop computer, desktop computer, and smartphone; and

the input data is determined within the gateway, based at least in part upon data received from the one or more Internet-connected devices, wherein the data from the one or more Internet-connected devices is based at least in part upon the data from the data source.

18. The method of claim 14 , further comprising offering, ceasing to offer, or modifying one of a product and a service, based at least in part upon the output data.

19. The method of claim 14 , further comprising modifying the process model based at least in part upon the results data.

20. The method of claim 14 , further comprising:

determining whether to repeat executing the process model, based at least in part upon the process model and the results data; and

repeating executing the process model until the process is complete, wherein determining whether the process is complete is based at least in part upon the process model and the results data.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 12, 2015
From: MUMMIGATTI, VINAYKUMAR S.
To: BANK OF AMERICA CORPORATION
Reel/Frame 035619/0417 →
Continuity (1)
Related Publication 20160337198A1 · Nov 17, 2016