The Experts below are selected from a list of 15 Experts worldwide ranked by ideXlab platform

Kristen Dietiker - One of the best experts on this subject based on the ideXlab platform.

  • deploying pgp whole disk Encryption in mac os x
    SIGUCCS: User Services Conference, 2009
    Co-Authors: Kristen Dietiker
    Abstract:

    The University Of Washington Department of Surgery IT Services Group supports faculty, researchers, and staff within a clinical hospital environment and at multiple sites. Because of the need to secure protected health information (PHI) due to regulations such as the Health Insurance Portability and Accountability Act (HIPAA), the department had previously implemented a PGP Universal and PGP Desktop solution for the whole disk Encryption of faculty and staff laptops. At the time this solution was selected and implemented, PGP did not have a whole disk Encryption Product for Macintosh systems. However, in August 2008, PGP released their WDE Product for Macintosh. The Department of Surgery IT Services Group (ITSG) began evaluating the Macintosh version of PGP Desktop and whole disk Encryption in Winter 2009. Several issues were identified during testing that were related to limitations in the Macintosh version of the software compared to the Windows version. However, once PGP Technical Support clarified these limitations and provided a solution that enabled multiple users on a laptop to enroll with the PGP Universal Server, testing was completed. An installation procedure was developed and refined. Finally, issues were identified that required ITSG to change technical support procedures on PGP encrypted Macintoshes.

  • SIGUCCS - Deploying PGP whole disk Encryption in Mac OS X
    Proceedings of the ACM SIGUCCS fall conference on User services conference - SIGUCCS '09, 2009
    Co-Authors: Kristen Dietiker
    Abstract:

    The University Of Washington Department of Surgery IT Services Group supports faculty, researchers, and staff within a clinical hospital environment and at multiple sites. Because of the need to secure protected health information (PHI) due to regulations such as the Health Insurance Portability and Accountability Act (HIPAA), the department had previously implemented a PGP Universal and PGP Desktop solution for the whole disk Encryption of faculty and staff laptops. At the time this solution was selected and implemented, PGP did not have a whole disk Encryption Product for Macintosh systems. However, in August 2008, PGP released their WDE Product for Macintosh. The Department of Surgery IT Services Group (ITSG) began evaluating the Macintosh version of PGP Desktop and whole disk Encryption in Winter 2009. Several issues were identified during testing that were related to limitations in the Macintosh version of the software compared to the Windows version. However, once PGP Technical Support clarified these limitations and provided a solution that enabled multiple users on a laptop to enroll with the PGP Universal Server, testing was completed. An installation procedure was developed and refined. Finally, issues were identified that required ITSG to change technical support procedures on PGP encrypted Macintoshes.

Lakka Joonas - One of the best experts on this subject based on the ideXlab platform.

  • BitLocker-levynsalaus : arkkitehtuuri ja käyttöönotto
    Tampereen ammattikorkeakoulu, 2017
    Co-Authors: Lakka Joonas
    Abstract:

    Tässä opinnäytetyössä perehdyttiin BitLocker-levynsalaustuotteen toimintaan ja sen käyttöönottoon tietoturvallisessa työasemaympäristössä. Työn tuloksia voidaan käyttää esimerkiksi tietoturvallisen BitLocker-konfiguraation muodostamiseen tai eri levynsalaustuotteiden soveltuvuuden arviointiin. Työssä kuvataan keskeiset BitLocker-levynsalauksen komponentit ja niiden toiminta. Erityisesti huomiota kiinnitetään mekanismeihin, joilla varsinaisen levynsalauksen salausavaimet muodostetaan. Mekanismeista havaittuja ominaisuuksia sovelletaan lopulta käytännön konfigurointimahdollisuuksiin. BitLocker-levynsalaustuote tarjoaa oletusasetuksillaankin varsin vahvan turvan suojattavalle tiedolle. Korotetun tietoturvan ympäristössä levynsalauksen turvallisuutta voidaan parantaa esimerkiksi vahvemmalla salausavaimella. Korotetun tietoturvan ympäristössä tulee kuitenkin huomioida kaikkien salauksessa käytettyjen avainten vahvuus, sillä salaus on vain niin vahva kuin sen heikoin salausavain.This thesis examines BitLocker disk Encryption Product’s architecture and deployment possibilities in a security critical environment. The results of this thesis could be used to form a secure BitLocker configuration or to evaluate other existing Encryption Products. The thesis aims to describe the principles of the key components of the BitLocker disk Encryption Product. Particular attention is paid to the way Encryption cipher’s Encryption keys are handled. Identified features of the key architecture are then used to form recommendations for a more secure configuration. Even with the default configuration the BitLocker disk Encryption offers a quite strong protection for user data. To achieve better security, BitLocker can be configured to use stronger Encryption key. However, not all key protectors manage to provide the necessary key strength for higher security demands

Muhammad Rizwan - One of the best experts on this subject based on the ideXlab platform.

  • Research and Implementation of Time Synchronous Dynamic Password Based on SM3 Hash Algorithm
    Open Journal of Applied Sciences, 2016
    Co-Authors: Dognery Sinaly Silue, Wanggen Wan, Muhammad Rizwan
    Abstract:

    With the rapid development of information technology, demand of network & information security has increased. People enjoy many benefits by virtue of information technology. At the same time network security has become the important challenge, but network information security has become a top priority. In the field of authentication, dynamic password technology has gained users’ trust and favor because of its safety and ease of operation. Dynamic password, SHA (Secure Hash Algorithm) is widely used globally and acts as information security mechanism against potential threat. The cryptographic algorithm is an open research area, and development of these state-owned technology Products helps secure Encryption Product and provides safeguard against threats. Dynamic password authentication technology is based on time synchronization, using the state-owned password algorithm. SM3 hash algorithm can meet the security needs of a variety of cryptographic applications for commercial cryptographic applications and verification of digital signatures, generation and verification of message authentication code. Dynamic password basically generates an unpredictable random numbers based on a combination of specialized algorithms. Each password can only be used once, and help provide high safety. Therefore, the dynamic password technology for network information security issues is of great significance. In our proposed algorithm, dynamic password is generated by SM3 Hash Algorithm using current time and the identity ID and it varies with time and changes randomly. Coupled with the SM3 hash algorithm security, dynamic password security properties can be further improved, thus it effectively improves network authentication security.

Dognery Sinaly Silue - One of the best experts on this subject based on the ideXlab platform.

  • Research and Implementation of Time Synchronous Dynamic Password Based on SM3 Hash Algorithm
    Open Journal of Applied Sciences, 2016
    Co-Authors: Dognery Sinaly Silue, Wanggen Wan, Muhammad Rizwan
    Abstract:

    With the rapid development of information technology, demand of network & information security has increased. People enjoy many benefits by virtue of information technology. At the same time network security has become the important challenge, but network information security has become a top priority. In the field of authentication, dynamic password technology has gained users’ trust and favor because of its safety and ease of operation. Dynamic password, SHA (Secure Hash Algorithm) is widely used globally and acts as information security mechanism against potential threat. The cryptographic algorithm is an open research area, and development of these state-owned technology Products helps secure Encryption Product and provides safeguard against threats. Dynamic password authentication technology is based on time synchronization, using the state-owned password algorithm. SM3 hash algorithm can meet the security needs of a variety of cryptographic applications for commercial cryptographic applications and verification of digital signatures, generation and verification of message authentication code. Dynamic password basically generates an unpredictable random numbers based on a combination of specialized algorithms. Each password can only be used once, and help provide high safety. Therefore, the dynamic password technology for network information security issues is of great significance. In our proposed algorithm, dynamic password is generated by SM3 Hash Algorithm using current time and the identity ID and it varies with time and changes randomly. Coupled with the SM3 hash algorithm security, dynamic password security properties can be further improved, thus it effectively improves network authentication security.

Net Always - One of the best experts on this subject based on the ideXlab platform.