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US Patent 9800052 Method and apparatus for power management using distributed generation

Patent 9800052 was granted and assigned to University of Florida on October, 2017 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent

Patent attributes

Patent Applicant
University of Florida
University of Florida
Current Assignee
University of Florida
University of Florida
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
9800052
Date of Patent
October 24, 2017
Patent Application Number
14770001
Date Filed
February 24, 2014
Patent Citations Received
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US Patent 12089546 Method and system for dynamic power delivery to a flexible growcenter using unutilized energy sources
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US Patent 12065048 Behind-the-meter charging station with availability notification
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US Patent 12067630 Adaptive intelligence and shared infrastructure lending transaction enablement platform responsive to crowd sourced information
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US Patent 12067633 Computing component arrangement based on ramping capabilities
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US Patent 11669914 Adaptive intelligence and shared infrastructure lending transaction enablement platform responsive to crowd sourced information
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US Patent 11669920 Computing component arrangement based on ramping capabilities
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US Patent 11669144 Methods and systems for distributed power control of flexible datacenters
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US Patent 11678615 Method and system for dynamic power delivery to a flexible growcenter using unutilized energy sources
0
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Patent Primary Examiner
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An Luu
Patent abstract

Embodiments relate to a method and system for power demand shaping (PDS) so as to manage power generation and use. Specific embodiments relate to data center power demand shaping to achieve high-performance low-overhead data center operation. Specific embodiments can incorporate standard (utility power) energy sources, renewable energy sources, or a combination of standard (utility power) energy sources and renewable energy sources. Embodiments of the subject PDS techniques can incorporate trimming the data center load power so as to allow DG systems to follow the power demand efficiently and/or incorporate two adaptive load tuning schemes that can boost data center performance and enable near-oracle operation during power demand trimming process. To implement a cross-layer power optimization scheme, embodiments of the subject invention relate to a power management module that can reside between front-end distributed generation and back-end computing facilities to provide a coordinated tuning between the supply and load.

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