Patents by Inventor Nils Dussart

Nils Dussart has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 8885833
    Abstract: A key recovery request for a device is received at a key recovery service and a particular one-time recovery credential in a sequence of multiple one-time recovery credentials is identified. In the sequence of multiple one-time recovery credentials, previous one-time recovery credentials in the sequence are indeterminable given subsequent one-time recovery credentials in the sequence. A recovery key associated with the device is also identified. The particular one-time recovery credential in the sequence is generated based on the recovery key, and is returned in response to the key recovery request. The particular one-time recovery credential can then be used by the device to decrypt encrypted data stored on a storage media of the device.
    Type: Grant
    Filed: April 11, 2011
    Date of Patent: November 11, 2014
    Assignee: Microsoft Corporation
    Inventors: Benjamin E. Nick, Magnus Bo Gustaf Nyström, Cristian M. Ilac, Niels T. Ferguson, Nils Dussart
  • Patent number: 8745386
    Abstract: Single-use authentication methods for accessing encrypted data stored on a protected volume of a computer are described, wherein access to the encrypted data involves decrypting a key protector stored on the computer that holds a volume-specific cryptographic key needed to decrypt the protected volume. Such single-use authentication methods rely on the provision of a key protector that can only be used once and/or that requires a new access credential for each use. In certain embodiments, a challenge-response process is also used as part of the authentication method to tie the issuance of a key protector and/or access credential to particular pieces of information that can uniquely identify a user.
    Type: Grant
    Filed: June 21, 2010
    Date of Patent: June 3, 2014
    Assignee: Microsoft Corporation
    Inventors: Octavian T. Ureche, Nils Dussart, Charles G. Jeffries, Cristian M. Ilac, Vijay G. Bharadwaj, Innokentiy Basmov, Stefan Thom, Son VoBa
  • Patent number: 8661534
    Abstract: A security system is provided for use with computer systems. In various embodiments, the security system can analyze the state of security of one or more computer systems to determine whether the computer systems comply with expressed security policies and to remediate the computer systems so that they conform with the expressed security policies. In various embodiments, the security system can receive compliance documents, determine whether one or more computer systems comply with portions of security policies specified in the compliance documents, and take actions specified in the compliance documents to cause the computer systems to comply with the specified security policies. The security system may provide a common, unified programming interface that applications or tools can employ to verify or enforce security policies.
    Type: Grant
    Filed: June 26, 2007
    Date of Patent: February 25, 2014
    Assignee: Microsoft Corporation
    Inventors: Arindam Chatterjee, Anders Samuelsson, Nils Dussart, Charles G. Jeffries, Amit R. Kulkarni
  • Patent number: 8509449
    Abstract: A key protector for a storage volume is created by generating an intermediate key and protecting, based at least in part on a public/private key pair, the intermediate key. A volume master key for encrypting and decrypting one or more volume encryption keys that are used to encrypt the storage volume can be encrypted in different manners, including being encrypted based at least in part on the intermediate key. A key protector for the storage volume is stored that includes both the encrypted volume master key and information indicating how to obtain the intermediate key. Subsequently, the key protector can be accessed and, based at least in part on a private key of the entity associated with the key protector, the intermediate key can be decrypted. The intermediate key can then be used to decrypt the volume master key.
    Type: Grant
    Filed: July 24, 2009
    Date of Patent: August 13, 2013
    Assignee: Microsoft Corporation
    Inventors: Octavian T. Ureche, Gaurav Sinha, Nils Dussart, Yi Liu, Vijay G. Bharadwaj, Niels T. Ferguson
  • Patent number: 8462955
    Abstract: An online key stored by a remote service is generated or otherwise obtained, and a storage media (as it applies to the storage of data on a physical or virtual storage media) master key for encrypting and decrypting a physical or virtual storage media or encrypting and decrypting one or more storage media encryption keys that are used to encrypt a physical or virtual storage media is encrypted based at least in part on the online key. A key protector for the storage media is stored, the key protector including the encrypted master key. The key protector can be subsequently accessed, and the online key obtained from the remote service. The master key is decrypted based on the online key, allowing the one or more storage media encryption keys that are used to decrypt the storage media to be decrypted.
    Type: Grant
    Filed: June 3, 2010
    Date of Patent: June 11, 2013
    Assignee: Microsoft Corporation
    Inventors: Octavian T. Ureche, Nils Dussart, Michael A. Halcrow, Charles G. Jeffries, Nathan T. Lewis, Cristian M. Ilac, Innokentiy Basmov, Magnus Bo Gustaf Nyström, Niels T. Ferguson
  • Publication number: 20120257759
    Abstract: A key recovery request for a device is received at a key recovery service and a particular one-time recovery credential in a sequence of multiple one-time recovery credentials is identified. In the sequence of multiple one-time recovery credentials, previous one-time recovery credentials in the sequence are indeterminable given subsequent one-time recovery credentials in the sequence. A recovery key associated with the device is also identified. The particular one-time recovery credential in the sequence is generated based on the recovery key, and is returned in response to the key recovery request. The particular one-time recovery credential can then be used by the device to decrypt encrypted data stored on a storage media of the device.
    Type: Application
    Filed: April 11, 2011
    Publication date: October 11, 2012
    Applicant: MICROSOFT CORPORATION
    Inventors: Benjamin E. Nick, Magnus Bo Gustaf Nyström, Cristian M. Ilac, Niels T. Ferguson, Nils Dussart
  • Publication number: 20110314279
    Abstract: Single-use authentication methods for accessing encrypted data stored on a protected volume of a computer are described, wherein access to the encrypted data involves decrypting a key protector stored on the computer that holds a volume-specific cryptographic key needed to decrypt the protected volume. Such single-use authentication methods rely on the provision of a key protector that can only be used once and/or that requires a new access credential for each use. In certain embodiments, a challenge-response process is also used as part of the authentication method to tie the issuance of a key protector and/or access credential to particular pieces of information that can uniquely identify a user.
    Type: Application
    Filed: June 21, 2010
    Publication date: December 22, 2011
    Applicant: MICROSOFT CORPORATION
    Inventors: Octavian T. Ureche, Nils Dussart, Charles G. Jeffries, Cristian M. Ilac, Vijay G. Bharadwaj, Innokentiy Basmov, Stefan Thom, Son VoBa
  • Publication number: 20110302398
    Abstract: An online key stored by a remote service is generated or otherwise obtained, and a storage media (as it applies to the storage of data on a physical or virtual storage media) master key for encrypting and decrypting a physical or virtual storage media or encrypting and decrypting one or more storage media encryption keys that are used to encrypt a physical or virtual storage media is encrypted based at least in part on the online key. A key protector for the storage media is stored, the key protector including the encrypted master key. The key protector can be subsequently accessed, and the online key obtained from the remote service. The master key is decrypted based on the online key, allowing the one or more storage media encryption keys that are used to decrypt the storage media to be decrypted.
    Type: Application
    Filed: June 3, 2010
    Publication date: December 8, 2011
    Applicant: MICROSOFT CORPORATION
    Inventors: Octavian T. Ureche, Nils Dussart, Michael A. Halcrow, Charles G. Jeffries, Nathan T. Lewis, Cristian M. Ilac, Innokentiy Basmov, Bo Gustaf Magnus Nystr+e,uml o+ee m, Niels T. Ferguson
  • Publication number: 20110022856
    Abstract: In accordance with one or more aspects, a key protector for a storage volume is created by generating an intermediate key and protecting, based at least in part on a public/private key pair, the intermediate key. A volume master key for encrypting and decrypting one or more volume encryption keys that are used to encrypt the storage volume can be encrypted in different manners, including being encrypted based at least in part on the intermediate key. A key protector for the storage volume is stored that includes both the encrypted volume master key and information indicating how to obtain the intermediate key. Subsequently, the key protector can be accessed and, based at least in part on a private key of the entity associated with the key protector, the intermediate key can be decrypted. The intermediate key can then be used to decrypt the volume master key.
    Type: Application
    Filed: July 24, 2009
    Publication date: January 27, 2011
    Applicant: MICROSOFT CORPORATION
    Inventors: Octavian T. Ureche, Gaurav Sinha, Nils Dussart, Yi Liu, Vijay G. Bharadwaj, Niels T. Ferguson
  • Publication number: 20090007264
    Abstract: A security system is provided for use with computer systems. In various embodiments, the security system can analyze the state of security of one or more computer systems to determine whether the computer systems comply with expressed security policies and to remediate the computer systems so that they conform with the expressed security policies. In various embodiments, the security system can receive compliance documents, determine whether one or more computer systems comply with portions of security policies specified in the compliance documents, and take actions specified in the compliance documents to cause the computer systems to comply with the specified security policies. The security system may provide a common, unified programming interface that applications or tools can employ to verify or enforce security policies.
    Type: Application
    Filed: June 26, 2007
    Publication date: January 1, 2009
    Applicant: Microsoft Corporation
    Inventors: Arindam Chatterjee, Anders Samuelsson, Nils Dussart, Charles G. Jeffries, Amit R. Kulkarni