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US Patent 9440507 Context aware active suspension control system

Patent 9440507 was granted and assigned to Levant Power Corporation on September, 2016 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent

Patent attributes

Patent Applicant
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Levant Power Corporation
Current Assignee
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Levant Power Corporation
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
9440507
Date of Patent
September 13, 2016
Patent Application Number
14242715
Date Filed
April 1, 2014
Patent Citations Received
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US Patent 12072193 Methods and systems for notifying and mitigating a suboptimal event occurring in a transport climate control system
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US Patent 12011968 Interface system for connecting a vehicle and a transport climate control system
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US Patent 12017505 Methods and systems for providing predictive energy consumption feedback for powering a transport climate control system using external data
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US Patent 11695275 Prioritized power delivery for facilitating transport climate control
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US Patent 11703341 Methods and systems for generation and utilization of supplemental stored energy for use in transport climate control
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US Patent 11712943 System and method for managing power and efficiently sourcing a variable voltage for a transport climate control system
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US Patent 11843303 Transport climate control system power architecture
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...
Patent Primary Examiner
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James Trammell
Patent abstract

A method for reducing power consumption in an active suspension system through the selective use of high performance, associated with high power demand, only in situations instantaneously deemed to provide a high ratio of benefit to cost. Input events are classified ahead of time, and are identified during operation of the system, ahead of time if possible through the use of look-ahead sensing or statistical analysis, or at the beginning of the event through the use of motion sensing. Once an event is detected, an estimation of the cost and benefits for an intervention of the active suspension system is made, and the intervention is scaled in a way to provide a good compromise. Relying on the nonlinearity of the cost and benefit expressions, this leads to overall reduced power consumption with small loss in perceived benefit.

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