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    • 2. 发明申请
    • SYSTEM FOR GEOLOCATION AWARENESS FOR VOICE ACTIVATED DIGITAL ASSISTANTS
    • US20200265699A1
    • 2020-08-20
    • US16869047
    • 2020-05-07
    • Joseph J. BangoMichael E. Dziekan
    • Joseph J. BangoMichael E. Dziekan
    • G08B19/00H04W4/021H04W4/90G08B25/10G08B21/18G08B7/06
    • A system for geolocation awareness for voice activated digital assistants comprising: a plurality of digital assistants in communication with a network; a cloud computing system in communication with the plurality of digital assistants via the network; a power transmission line monitor in communication with the network, the power transmission line monitor configured to monitor temperature, electric current in the power transmission line, and three-axis shock above a threshold level; a remote server in communication with the power transmission line monitor via the network and in communication with the cloud computing system via the network, the remote server configured to determine if the monitored temperature indicates an emergency event, and configured to determine if the monitored electric current indicates an emergency event, and configured to determine if the monitored three-axis shock indicates an emergency event, the remote server further configured to transmit to the cloud computing system the type and location of an indicated emergency event; and where the cloud computing system is configured to instruct the digital assistants within a predetermined distance from the emergency event to audibly alert about the emergency event for a predetermined time period. A digital assistant comprising a non-transitory computer-readable medium, where the medium includes a set of instructions stored thereon that when accessed by a processor enable the processor to perform a method of geolocation awareness for the digital assistant, the method comprising: configuring the digital assistant to be in communication with a network; configuring the digital assistant to be in communication with a cloud computing system via the network; configuring the digital assistant to be in communication with a remote server via the cloud computing system; configuring the digital assistant to be in communication with a power transmission line monitor via the remote server; receiving information from the cloud computing system that an emergency event is detected by the power transmission line monitor; issuing an emergency audible alert by the digital assistant if the digital assistant is within a predetermined distance of the emergency event. A power transmission line monitor comprising a non-transitory computer-readable medium, where the medium includes a set of instructions stored thereon that when accessed by a processor enable the processor to perform a method of geolocation awareness for a digital assistant, the method comprising: configuring the power transmission line monitor to be in communication with a network; configuring the power transmission line monitor to be in communication with a remote server via the network; configuring the power transmission line monitor to be in communication with a cloud computing system via the remote server; configuring the power transmission line monitor to be in communication with a digital assistant located in a residence or a business via the cloud computing system; monitoring temperature, electric current in a power transmission line, and three-axis shock above a threshold level, transmitting the temperature, electric current, and three-axis shock information to the remote server.
    • 4. 发明申请
    • METHOD FOR LOCALIZED SUBSCRIBER CONTROL OF ELECTRIC PROVIDER BILLING
    • US20210192587A1
    • 2021-06-24
    • US17195100
    • 2021-03-08
    • Joseph J. BangoMichael E. Dziekan
    • Joseph J. BangoMichael E. Dziekan
    • G06Q30/04G06Q50/06
    • A system for localized subscriber control of electric provider billing comprising: a digital assistant in communication with powerline sensors, the powerline sensors configured to detect weather, natural disaster, or other event that compromises the electric grid in a given predetermined region, a smart utility box in operational communication with a subscriber's utility connection and in communication with the digital assistant, wherein the smart utility box is configured to disconnect from a utility and stop incurring charges from the utility if the smart utility box determines that utility prices may exceed a threshold value. A system of reCAPTCHA comprising: a series of images showing ice on a powerline, or ice on a powerline, fire on or near a powerline, or other condition that can lead to failure of a powerline; and a screen to allow users to select the image showing ice on a powerline, or ice on a powerline, fire on or near a powerline, or other condition that can lead to failure of a powerline which will assist a power system AI deep learning. A power transmission line monitor comprising a non-transitory computer-readable medium, where the medium includes a set of instructions stored thereon that when accessed by a processor enable the processor to perform a method of geolocation awareness for a digital assistant, the method comprising: configuring the power transmission line monitor to be in communication with a network; configuring the power transmission line monitor to be in communication with a remote server via the network; configuring the power transmission line monitor to be in communication with a cloud computing system via the remote server; configuring the power transmission line monitor to be in communication with the internet such that the present cost of electricity for a given user defined geographical service area is obtained, and the current cost of electric service in the predefined geographical location reported, preferably using bluetooth, email, or a digital assistant located in a residence or a business via the cloud computing system; monitoring temperature, icing of the powerline, electric current in a power transmission line, and three-axis shock above a threshold level, transmitting the temperature, icing condition, electric current, and three-axis shock information to the remote server.
    • 5. 发明授权
    • System for geolocation awareness for voice activated digital assistants
    • US10943455B2
    • 2021-03-09
    • US16869047
    • 2020-05-07
    • Joseph J. BangoMichael E. Dziekan
    • Joseph J. BangoMichael E. Dziekan
    • G08B19/00H04W4/021H04W4/90G08B7/06G08B25/10G08B21/18
    • A system for geolocation awareness for voice activated digital assistants comprising: a plurality of digital assistants in communication with a network; a cloud computing system in communication with the plurality of digital assistants via the network; a power transmission line monitor in communication with the network, the power transmission line monitor configured to monitor temperature, electric current in the power transmission line, and three-axis shock above a threshold level; a remote server in communication with the power transmission line monitor via the network and in communication with the cloud computing system via the network, the remote server configured to determine if the monitored temperature indicates an emergency event, and configured to determine if the monitored electric current indicates an emergency event, and configured to determine if the monitored three-axis shock indicates an emergency event, the remote server further configured to transmit to the cloud computing system the type and location of an indicated emergency event; and where the cloud computing system is configured to instruct the digital assistants within a predetermined distance from the emergency event to audibly alert about the emergency event for a predetermined time period. A digital assistant comprising a non-transitory computer-readable medium, where the medium includes a set of instructions stored thereon that when accessed by a processor enable the processor to perform a method of geolocation awareness for the digital assistant, the method comprising: configuring the digital assistant to be in communication with a network; configuring the digital assistant to be in communication with a cloud computing system via the network; configuring the digital assistant to be in communication with a remote server via the cloud computing system; configuring the digital assistant to be in communication with a power transmission line monitor via the remote server; receiving information from the cloud computing system that an emergency event is detected by the power transmission line monitor; issuing an emergency audible alert by the digital assistant if the digital assistant is within a predetermined distance of the emergency event. A power transmission line monitor comprising a non-transitory computer-readable medium, where the medium includes a set of instructions stored thereon that when accessed by a processor enable the processor to perform a method of geolocation awareness for a digital assistant, the method comprising: configuring the power transmission line monitor to be in communication with a network; configuring the power transmission line monitor to be in communication with a remote server via the network; configuring the power transmission line monitor to be in communication with a cloud computing system via the remote server; configuring the power transmission line monitor to be in communication with a digital assistant located in a residence or a business via the cloud computing system; monitoring temperature, electric current in a power transmission line, and three-axis shock above a threshold level, transmitting the temperature, electric current, and three-axis shock information to the remote server.
    • 6. 发明授权
    • Method for ai and cloud network enhanced electric subscriber control of billing and system loads, with contingency backup
    • US11887171B2
    • 2024-01-30
    • US17195100
    • 2021-03-08
    • Joseph J. BangoMichael E. Dziekan
    • Joseph J. BangoMichael E. Dziekan
    • G06Q50/06H04L67/10G06Q30/04
    • G06Q30/04G06Q50/06H04L67/10
    • A system for localized subscriber control of electric provider billing comprising: a digital assistant in communication with powerline sensors, the powerline sensors configured to detect weather, natural disaster, or other event that compromises the electric grid in a given predetermined region, a smart utility box in operational communication with a subscriber's utility connection and in communication with the digital assistant, wherein the smart utility box is configured to disconnect from a utility and stop incurring charges from the utility if the smart utility box determines that utility prices may exceed a threshold value. A system of reCAPTCHA comprising: a series of images showing ice on a powerline, or ice on a powerline, fire on or near a powerline, or other condition that can lead to failure of a powerline; and a screen to allow users to select the image showing ice on a powerline, or ice on a powerline, fire on or near a powerline, or other condition that can lead to failure of a powerline which will assist a power system AI deep learning. A power transmission line monitor comprising a non-transitory computer-readable medium, where the medium includes a set of instructions stored thereon that when accessed by a processor enable the processor to perform a method of geolocation awareness for a digital assistant, the method comprising: configuring the power transmission line monitor to be in communication with a network; configuring the power transmission line monitor to be in communication with a remote server via the network; configuring the power transmission line monitor to be in communication with a cloud computing system via the remote server; configuring the power transmission line monitor to be in communication with the internet such that the present cost of electricity for a given user defined geographical service area is obtained, and the current cost of electric service in the predefined geographical location reported, preferably using bluetooth, email, or a digital assistant located in a residence or a business via the cloud computing system; monitoring temperature, icing of the powerline, electric current in a power transmission line, and three-axis shock above a threshold level, transmitting the temperature, icing condition, electric current, and three-axis shock information to the remote server.