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US Patent 7971252 Generating a multiple-prerequisite attack graph

Patent 7971252 was granted and assigned to Massachusetts Institute of Technology on June, 2011 by the United States Patent and Trademark Office.

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Patent
Patent
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Patent attributes

Current Assignee
Massachusetts Institute of Technology
Massachusetts Institute of Technology
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
79712520
Patent Inventor Names
Richard P. Lippmann0
Keith J. Piwowarski0
Kyle W. Ingols0
Date of Patent
June 28, 2011
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Patent Application Number
117601580
Date Filed
June 8, 2007
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Patent Citations Received
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US Patent 11956265 Systems and methods for inferring entity relationships via network communications of users or user devices
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US Patent 11770401 Correlated risk in cybersecurity
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US Patent 11777976 Information technology security assessment system
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US Patent 11783052 Systems and methods for forecasting cybersecurity ratings based on event-rate scenarios
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US Patent 11777983 Systems and methods for rapidly generating security ratings
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US Patent 11882146 Information technology security assessment system
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US Patent 11949655 Systems and methods for determining asset importance in security risk management
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US Patent 12079347 Systems and methods for assessing cybersecurity risk in a work from home environment
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Patent Primary Examiner
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Jeffrey D. Popham
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Patent abstract

In one aspect, a method to generate an attack graph includes determining if a potential node provides a first precondition equivalent to one of preconditions provided by a group of preexisting nodes on the attack graph. The group of preexisting nodes includes a first state node, a first vulnerability instance node, a first prerequisite node, and a second state node. The method also includes, if the first precondition is equivalent to one of the preconditions provided by the group of preexisting nodes, coupling a current node to a preexisting node providing the precondition equivalent to the first precondition using a first edge and if the first precondition is not equivalent to one of the preconditions provided by the group of preexisting nodes, generating the potential node as a new node on the attack graph and coupling the new node to the current node using a second edge.

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