Patents by Inventor Shobhna Goyal

Shobhna Goyal has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20240031432
    Abstract: The concepts and technologies disclosed herein provide high availability and high utilization cloud data center architecture for supporting telecommunications services. According to one aspect of the concepts and technologies disclosed herein, a 4-site model of application placement within the cloud computing environment provides 37.5% resource utilization with site availability of five 9s (99.999%) and virtual machine availability of five 9s. According to another aspect of the concepts and technologies disclosed herein, a 3-site model of application placement within the cloud computing environment provides 66% resource utilization with site availability of five 9s and virtual machine availability of five 9s. According to another aspect of the concepts and technologies disclosed herein, a 4-site model of application placement within the cloud computing environment provides 75% resource utilization with site availability of five 9s and virtual machine availability of five 9s.
    Type: Application
    Filed: April 20, 2023
    Publication date: January 25, 2024
    Applicant: AT&T Intellectual Property I, L.P.
    Inventors: Manikka Thyagarajan, Kaustubh Joshi, Ganeshkumar Natarajan, Israel L. Means, Michael L. Hammer, Praveen Ramadenu, Shobhna Goyal, Marius J. Gudelis, Satyendra Tripathi
  • Patent number: 11671489
    Abstract: The concepts and technologies disclosed herein provide high availability and high utilization cloud data center architecture for supporting telecommunications services. According to one aspect of the concepts and technologies disclosed herein, a 4-site model of application placement within the cloud computing environment provides 37.5% resource utilization with site availability of five 9s (99.999%) and virtual machine availability of five 9s. According to another aspect of the concepts and technologies disclosed herein, a 3-site model of application placement within the cloud computing environment provides 66% resource utilization with site availability of five 9s and virtual machine availability of five 9s. According to another aspect of the concepts and technologies disclosed herein, a 4-site model of application placement within the cloud computing environment provides 75% resource utilization with site availability of five 9s and virtual machine availability of five 9s.
    Type: Grant
    Filed: November 30, 2020
    Date of Patent: June 6, 2023
    Assignee: AT&T Intellectual Property I, L.P.
    Inventors: Manikka Thyagarajan, Kaustubh Joshi, Ganeshkumar Natarajan, Israel L. Means, Michael L. Hammer, Praveen Ramadenu, Shobhna Goyal, Marius J. Gudelis, Satyendra Tripathi
  • Publication number: 20210112119
    Abstract: The concepts and technologies disclosed herein provide high availability and high utilization cloud data center architecture for supporting telecommunications services. According to one aspect of the concepts and technologies disclosed herein, a 4-site model of application placement within the cloud computing environment provides 37.5% resource utilization with site availability of five 9s (99.999%) and virtual machine availability of five 9s. According to another aspect of the concepts and technologies disclosed herein, a 3-site model of application placement within the cloud computing environment provides 66% resource utilization with site availability of five 9s and virtual machine availability of five 9s. According to another aspect of the concepts and technologies disclosed herein, a 4-site model of application placement within the cloud computing environment provides 75% resource utilization with site availability of five 9s and virtual machine availability of five 9s.
    Type: Application
    Filed: November 30, 2020
    Publication date: April 15, 2021
    Applicant: AT&T Intellectual Property I, L.P.
    Inventors: Manikka Thyagarajan, Kaustubh Joshi, Ganeshkumar Natarajan, Israel L. Means, Michael L. Hammer, Praveen Ramadenu, Shobhna Goyal, Marius J. Gudelis, Satyendra Tripathi
  • Patent number: 10855757
    Abstract: The concepts and technologies disclosed herein provide high availability and high utilization cloud data center architecture for supporting telecommunications services. According to one aspect of the concepts and technologies disclosed herein, a 4-site model of application placement within the cloud computing environment provides 37.5% resource utilization with site availability of five 9s (99.999%) and virtual machine availability of five 9s. According to another aspect of the concepts and technologies disclosed herein, a 3-site model of application placement within the cloud computing environment provides 66% resource utilization with site availability of five 9s and virtual machine availability of five 9s. According to another aspect of the concepts and technologies disclosed herein, a 4-site model of application placement within the cloud computing environment provides 75% resource utilization with site availability of five 9s and virtual machine availability of five 9s.
    Type: Grant
    Filed: December 19, 2018
    Date of Patent: December 1, 2020
    Assignee: AT&T Intellectual Property I, L.P.
    Inventors: Manikka Thyagarajan, Kaustubh Joshi, Ganeshkumar Natarajan, Israel L. Means, Michael L. Hammer, Praveen Ramadenu, Shobhna Goyal, Marius J. Gudelis, Satyendra S. Tripathi
  • Publication number: 20200204622
    Abstract: The concepts and technologies disclosed herein provide high availability and high utilization cloud data center architecture for supporting real-time services. According to one aspect of the concepts and technologies disclosed herein, a 4-site model of application placement within the cloud computing environment provides 37.5% resource utilization with site availability of five 9s (99.999%) and virtual machine availability of five 9s. According to another aspect of the concepts and technologies disclosed herein, a 3-site model of application placement within the cloud computing environment provides 66% resource utilization with site availability of five 9s and virtual machine availability of five 9s. According to another aspect of the concepts and technologies disclosed herein, a 4-site model of application placement within the cloud computing environment provides 75% resource utilization with site availability of five 9s and virtual machine availability of five 9s.
    Type: Application
    Filed: December 19, 2018
    Publication date: June 25, 2020
    Applicant: AT&T Intellectual Property I, L.P.
    Inventors: Manikka Thyagarajan, Kaustubh Joshi, Ganeshkumar Natarajan, Israel L. Means, Michael L. Hammer, Praveen Ramadenu, Shobhna Goyal, Marius J. Gudelis, Satyendra S. Tripathi
  • Publication number: 20190373049
    Abstract: Concepts and technologies disclosed herein are directed to virtual zones for Open Systems Interconnection (“OSI”) communication model layers 4-7 services in a cloud computing system. According to one aspect of the concepts and technologies disclosed herein, a cloud computing system can include a hardware resource and a virtual zone. The virtual zone can include a virtual network function (“VNF”) that is executable by the hardware resource. The VNF can support a service that operates within one of layers 4-7 of the OSI communication model. A computing system can detect new subscribers to the service within the virtual zone. The computing system also can determine that a capacity constraint exists within the virtual zone as a result of the new subscribers. The computing system also can home the new subscribers to the further virtual zone so that the further VNF can provide the service to the new subscribers.
    Type: Application
    Filed: August 19, 2019
    Publication date: December 5, 2019
    Applicant: AT&T Intellectual Property I, L.P.
    Inventors: Anisa Parikh, Neela R. Atluri, Paritosh Bajpay, Sekar Ganesan, Shobhna Goyal, Shiv Kumar, Magda K. Nassar, Satyendra Tripathi, Ralph Utano
  • Patent number: 10389796
    Abstract: Concepts and technologies disclosed herein are directed to virtual zones for Open Systems Interconnection (“OSI”) communication model layers 4-7 services in a cloud computing system. According to one aspect of the concepts and technologies disclosed herein, a cloud computing system can include a hardware resource and a virtual zone. The virtual zone can include a virtual network function (“VNF”) that is executable by the hardware resource. The VNF can support a service that operates within one of layers 4-7 of the OSI communication model. A computing system can detect new subscribers to the service within the virtual zone. The computing system also can determine that a capacity constraint exists within the virtual zone as a result of the new subscribers. The computing system also can home the new subscribers to the further virtual zone so that the further VNF can provide the service to the new subscribers.
    Type: Grant
    Filed: October 17, 2016
    Date of Patent: August 20, 2019
    Assignee: AT&T Intellectual Property I, L.P.
    Inventors: Anisa Parikh, Neela R. Atluri, Paritosh Bajpay, Sekar Ganesan, Shobhna Goyal, Shiv Kumar, Magda K. Nassar, Satyendra Tripathi, Ralph Utano
  • Patent number: 10291689
    Abstract: According to one aspect disclosed herein, a service centric virtual network function architecture can be used for development and deployment of services in a cloud computing system. The cloud computing system can include a plurality of compute resources and a plurality of memory resources. A portion of the plurality of memory resources can include virtual machine monitor instructions. The virtual machine monitor instructions can be executed by a first portion of the plurality of compute resources to perform operations. In particular, the virtual machine monitor instructions can be executed by the first portion of the plurality of compute resources to instantiate a virtual network function to be executed by a second portion of the plurality of compute resources. The virtual network function can include at least a portion of a decomposition of a physical network function that supports at least a portion of a telecommunications service.
    Type: Grant
    Filed: August 20, 2014
    Date of Patent: May 14, 2019
    Assignee: AT&T Intellectual Property I, L.P.
    Inventors: Anisa Parikh, Neela R. Atluri, Paritosh Bajpay, Sekar Ganesan, Shobhna Goyal, Shiv Kumar, Magda K. Nassar, Satyendra Tripathi, Ralph Utano
  • Patent number: 9800673
    Abstract: Concepts and technologies disclosed herein are directed to a service compiler component and service controller for Open Systems Interconnection (“OSI”) communication model layer 4 through layer 7 services in a cloud computing system. According to one aspect of the concepts and technologies disclosed herein, the service compiler component can receive compiler data associated with a new service. The service compiler component also can analyze the compiler data at least to determine at least one virtual network function (“VNF”) to be used to instantiate the new service. The service compiler also can generate a template for the new service.
    Type: Grant
    Filed: August 20, 2014
    Date of Patent: October 24, 2017
    Assignee: AT&T Intellectual Property I, L.P.
    Inventors: Anisa Parikh, Neela R. Atluri, Paritosh Bajpay, Sekar Ganesan, Shobhna Goyal, Shiv Kumar, Magda K. Nassar, Satyendra Tripathi, Ralph Utano
  • Patent number: 9749242
    Abstract: According to one aspect of the concepts and technologies disclosed herein, a cloud computing system can include a hardware resource and a Network Platform as a Service (“NPaaS”) layer. The NPaaS layer can expose a cloud service for use by a service that operates within at least one of layer 4 through layer 7 of the Open Systems Interconnection (“OSI”) communication model. The cloud service can include a database service, an application container service, a resource broker service, a load balancer service, a domain name system (“DNS”) service, a state persistence service, a probe service, or a combination thereof. The NPaaS also can receive a request for the cloud service, and in response to the request, can provide the cloud service.
    Type: Grant
    Filed: August 20, 2014
    Date of Patent: August 29, 2017
    Assignee: AT&T Intellectual Property I, L.P.
    Inventors: Anisa Parikh, Neela R. Atluri, Paritosh Bajpay, Sekar Ganesan, Shobhna Goyal, Shiv Kumar, Magda K. Nassar, Satyendra Tripathi, Ralph Utano
  • Publication number: 20170034257
    Abstract: Concepts and technologies disclosed herein are directed to virtual zones for Open Systems Interconnection (“OSI”) communication model layers 4-7 services in a cloud computing system. According to one aspect of the concepts and technologies disclosed herein, a cloud computing system can include a hardware resource and a virtual zone. The virtual zone can include a virtual network function (“VNF”) that is executable by the hardware resource. The VNF can support a service that operates within one of layers 4-7 of the OSI communication model. A computing system can detect new subscribers to the service within the virtual zone. The computing system also can determine that a capacity constraint exists within the virtual zone as a result of the new subscribers. The computing system also can home the new subscribers to the further virtual zone so that the further VNF can provide the service to the new subscribers.
    Type: Application
    Filed: October 17, 2016
    Publication date: February 2, 2017
    Applicant: AT&T Intellectual Property I, L.P.
    Inventors: Anisa Parikh, Neela R. Atluri, Paritosh Bajpay, Sekar Ganesan, Shobhna Goyal, Shiv Kumar, Magda K. Nassar, Satyendra Tripathi, Ralph Utano
  • Patent number: 9473567
    Abstract: Concepts and technologies disclosed herein are directed to virtual zones for Open Systems Interconnection (“OSI”) communication model layers 4-7 services in a cloud computing system. According to one aspect of the concepts and technologies disclosed herein, a cloud computing system can include a hardware resource and a virtual zone. The virtual zone can include a virtual network function (“VNF”) that is executable by the hardware resource. The VNF can support a service that operates within one of layers 4-7 of the OSI communication model. A computing system can detect new subscribers to the service within the virtual zone. The computing system also can determine that a capacity constraint exists within the virtual zone as a result of the new subscribers. The computing system also can home the new subscribers to the further virtual zone so that the further VNF can provide the service to the new subscribers.
    Type: Grant
    Filed: August 20, 2014
    Date of Patent: October 18, 2016
    Assignee: AT&T Intellectual Property I, L.P.
    Inventors: Anisa Parikh, Neela R. Atluri, Paritosh Bajpay, Sekar Ganesan, Shobhna Goyal, Shiv Kumar, Magda K. Nassar, Satyendra Tripathi, Ralph Utano
  • Publication number: 20160057209
    Abstract: According to one aspect disclosed herein, a service centric virtual network function architecture can be used for development and deployment of services in a cloud computing system. The cloud computing system can include a plurality of compute resources and a plurality of memory resources. A portion of the plurality of memory resources can include virtual machine monitor instructions. The virtual machine monitor instructions can be executed by a first portion of the plurality of compute resources to perform operations. In particular, the virtual machine monitor instructions can be executed by the first portion of the plurality of compute resources to instantiate a virtual network function to be executed by a second portion of the plurality of compute resources. The virtual network function can include at least a portion of a decomposition of a physical network function that supports at least a portion of a telecommunications service.
    Type: Application
    Filed: August 20, 2014
    Publication date: February 25, 2016
    Applicant: AT&T INTELLECTUAL PROPERTY I, L.P.
    Inventors: Anisa Parikh, Neela R. Atluri, Paritosh Bajpay, Sekar Ganesan, Shobhna Goyal, Shiv Kumar, Magda K. Nassar, Satyendra Tripathi, Ralph Utano
  • Publication number: 20160057231
    Abstract: Concepts and technologies disclosed herein are directed to avoiding registration storms for Open Systems Interconnection (“OSI”) communication model layers 4-7 services in a cloud computing system. According to one aspect of the concepts and technologies disclosed herein, a traffic distribution system can receive a connection request from a device. The traffic distribution system also can send the connection request to a site. The site can include a virtual call session control function (“V-CSCF”). The site also can include a state persistence database. The V-CSCF can cause a registration state associated with the device to be stored in the state persistence database. The registration state can be replicated to one or more further persistence databases that operate within one or more further sites.
    Type: Application
    Filed: August 20, 2014
    Publication date: February 25, 2016
    Applicant: AT&T Intellectual Property I, L.P.
    Inventors: Anisa Parikh, Neela R. Atluri, Paritosh Bajpay, Sekar Ganesan, Shobhna Goyal, Shiv Kumar, Magda K. Nassar, Satyendra Tripathi, Ralph Utano
  • Publication number: 20160057071
    Abstract: According to one aspect of the concepts and technologies disclosed herein, a cloud computing system can include a hardware resource and a Network Platform as a Service (“NPaaS”) layer. The NPaaS layer can expose a cloud service for use by a service that operates within at least one of layer 4 through layer 7 of the Open Systems Interconnection (“OSI”) communication model. The cloud service can include a database service, an application container service, a resource broker service, a load balancer service, a domain name system (“DNS”) service, a state persistence service, a probe service, or a combination thereof. The NPaaS also can receive a request for the cloud service, and in response to the request, can provide the cloud service.
    Type: Application
    Filed: August 20, 2014
    Publication date: February 25, 2016
    Applicant: AT&T INTELLECTUAL PROPERTY I, L.P.
    Inventors: Anisa Parikh, Neela R. Atluri, Paritosh Bajpay, Sekar Ganesan, Shobhna Goyal, Shiv Kumar, Magda K. Nassar, Satyendra Tripathi, Ralph Utano
  • Publication number: 20160057208
    Abstract: Concepts and technologies disclosed herein are directed to virtual zones for Open Systems Interconnection (“OSI”) communication model layers 4-7 services in a cloud computing system. According to one aspect of the concepts and technologies disclosed herein, a cloud computing system can include a hardware resource and a virtual zone. The virtual zone can include a virtual network function (“VNF”) that is executable by the hardware resource. The VNF can support a service that operates within one of layers 4-7 of the OSI communication model. A computing system can detect new subscribers to the service within the virtual zone. The computing system also can determine that a capacity constraint exists within the virtual zone as a result of the new subscribers. The computing system also can home the new subscribers to the further virtual zone so that the further VNF can provide the service to the new subscribers.
    Type: Application
    Filed: August 20, 2014
    Publication date: February 25, 2016
    Applicant: AT&T INTELLECTUAL PROPERTY I, L.P.
    Inventors: Anisa Parikh, Neela R. Atluri, Paritosh Bajpay, Sekar Ganesan, Shobhna Goyal, Shiv Kumar, Magda K. Nassar, Satyendra Tripathi, Ralph Utano
  • Publication number: 20160057234
    Abstract: Concepts and technologies disclosed herein are directed to a service compiler component and service controller for Open Systems Interconnection (“OSI”) communication model layer 4 through layer 7 services in a cloud computing system. According to one aspect of the concepts and technologies disclosed herein, the service compiler component can receive compiler data associated with a new service. The service compiler component also can analyze the compiler data at least to determine at least one virtual network function (“VNF”) to be used to instantiate the new service. The service compiler also can generate a template for the new service.
    Type: Application
    Filed: August 20, 2014
    Publication date: February 25, 2016
    Applicant: AT&T Intellectual Property I, L.P.
    Inventors: Anisa Parikh, Neela R. Atluri, Paritosh Bajpay, Sekar Ganesan, Shobhna Goyal, Shiv Kumar, Magda K. Nassar, Satyendra Tripathi, Ralph Utano