Method for ai and cloud network enhanced electric subscriber control of billing and system loads, with contingency backup

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 s...

Ausführliche Beschreibung

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Bibliographische Detailangaben
Hauptverfasser: Bango, Joseph J, Dziekan, Michael E
Format: Patent
Sprache:eng
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Beschreibung
Zusammenfassung: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.