The Experts below are selected from a list of 697290 Experts worldwide ranked by ideXlab platform

Främling Kary - One of the best experts on this subject based on the ideXlab platform.

  • An OAuth-based Authentication Mechanism for Open Messaging Interface Standard
    'Scitepress', 2020
    Co-Authors: Monga, Hitesh Chander, Kinnunen Tuomas, Malhi Avleen, Javed Asad, Främling Kary
    Abstract:

    The Internet of Things (IoT) security and privacy remain a major challenge, especially due to the highly scalable and distributed nature of IoT networks. IoT security has an exceptionally wide scope which also leads to the most demanding requirements needed for the widespread realization of many IoT visions. It includes the tasks such as trusted sensing, computation, communication, privacy in terms of security scope. A large number of industry-driven domain specific standards has been developed which hinder the development of a single IoT ecosystem. O-MI and O-DF standards were previously proposed to address the challenge of interoperability in IoT devices. This paper highlights and discusses the measures taken to enhance the security of these standards by integration of OAuth 2.0 service provider functionality with the O-MI authentication Module along with the existing security Module. The security architecture has been proposed which enhances the security features by providing autho rization without use of certificates. The implementation details of the Plug-in Module for envisioned security model developed for the O-MI and O-DF standards have been discussed.WASP Professor K Främlin

  • An OAuth-based Authentication Mechanism for Open Messaging Interface Standard
    'Scitepress', 2020
    Co-Authors: Monga, Hitesh Chander, Kinnunen Tuomas, Malhi Avleen, Javed Asad, Främling Kary
    Abstract:

    Tuhosin alkuperäisen hyvin vajaan tietueen. Siinä oli mukana tiedosto, mutta se ei auennut.The Internet of Things (IoT) security and privacy remain a major challenge, especially due to the highly scalable and distributed nature of IoT networks. IoT security has an exceptionally wide scope which also leads to the most demanding requirements needed for the widespread realization of many IoT visions. It includes the tasks such as trusted sensing, computation, communication, privacy in terms of security scope. A large number of industry-driven domain specific standards has been developed which hinder the development of a single IoT ecosystem. O-MI and O-DF standards were previously proposed to address the challenge of interoperability in IoT devices. This paper highlights and discusses the measures taken to enhance the security of these standards by integration of OAuth 2.0 service provider functionality with the O-MI authentication Module along with the existing security Module. The security architecture has been proposed which enhances the security features by providing authorization without use of certificates. The implementation details of the Plug-in Module for envisioned security model developed for the O-MI and O-DF standards have been discussed.Peer reviewe

  • Authentication and Access Control for Open Messaging Interface Standard
    'Association for Computing Machinery (ACM)', 2017
    Co-Authors: Yousefnezhad Narges, Javed Asad, Filippov Roman, Buda Andrea, Madhikermi Manik, Främling Kary
    Abstract:

    | openaire: EC/H2020/688203/EU//BIoTopeThe number of Internet of Things (IoT) vendors is rapidly growing, providing solutions for all levels of the IoT stack. Despite the universal agreement on the need for a standardized technology stack, following the model of the world-wide-web, a large number of industry-driven domain specific standards hinder the development of a single IoT ecosystem. An attempt to solve this challenge is the introduction of O-MI (Open Messaging Interface) and O-DF (Open Data Format), two domain independent standards published by Open Group. Despite their good compatibility, they define no specific security model. This paper takes the first step of defining a security model for these standards by proposing suitable access control and authentication mechanisms that can regulate the rights of different principles and operations defined in these standards. First, a brief introduction is provided of the O-MI and O-DF standards, including a comparison with existing standards. Second, the envisioned security model is presented, together with the implementation details of the Plug-in Module developed for the O-MI and O-DF reference implementation.Peer reviewe

Javed Asad - One of the best experts on this subject based on the ideXlab platform.

  • An OAuth-based Authentication Mechanism for Open Messaging Interface Standard
    'Scitepress', 2020
    Co-Authors: Monga, Hitesh Chander, Kinnunen Tuomas, Malhi Avleen, Javed Asad, Främling Kary
    Abstract:

    The Internet of Things (IoT) security and privacy remain a major challenge, especially due to the highly scalable and distributed nature of IoT networks. IoT security has an exceptionally wide scope which also leads to the most demanding requirements needed for the widespread realization of many IoT visions. It includes the tasks such as trusted sensing, computation, communication, privacy in terms of security scope. A large number of industry-driven domain specific standards has been developed which hinder the development of a single IoT ecosystem. O-MI and O-DF standards were previously proposed to address the challenge of interoperability in IoT devices. This paper highlights and discusses the measures taken to enhance the security of these standards by integration of OAuth 2.0 service provider functionality with the O-MI authentication Module along with the existing security Module. The security architecture has been proposed which enhances the security features by providing autho rization without use of certificates. The implementation details of the Plug-in Module for envisioned security model developed for the O-MI and O-DF standards have been discussed.WASP Professor K Främlin

  • An OAuth-based Authentication Mechanism for Open Messaging Interface Standard
    'Scitepress', 2020
    Co-Authors: Monga, Hitesh Chander, Kinnunen Tuomas, Malhi Avleen, Javed Asad, Främling Kary
    Abstract:

    Tuhosin alkuperäisen hyvin vajaan tietueen. Siinä oli mukana tiedosto, mutta se ei auennut.The Internet of Things (IoT) security and privacy remain a major challenge, especially due to the highly scalable and distributed nature of IoT networks. IoT security has an exceptionally wide scope which also leads to the most demanding requirements needed for the widespread realization of many IoT visions. It includes the tasks such as trusted sensing, computation, communication, privacy in terms of security scope. A large number of industry-driven domain specific standards has been developed which hinder the development of a single IoT ecosystem. O-MI and O-DF standards were previously proposed to address the challenge of interoperability in IoT devices. This paper highlights and discusses the measures taken to enhance the security of these standards by integration of OAuth 2.0 service provider functionality with the O-MI authentication Module along with the existing security Module. The security architecture has been proposed which enhances the security features by providing authorization without use of certificates. The implementation details of the Plug-in Module for envisioned security model developed for the O-MI and O-DF standards have been discussed.Peer reviewe

  • Authentication and Access Control for Open Messaging Interface Standard
    'Association for Computing Machinery (ACM)', 2017
    Co-Authors: Yousefnezhad Narges, Javed Asad, Filippov Roman, Buda Andrea, Madhikermi Manik, Främling Kary
    Abstract:

    | openaire: EC/H2020/688203/EU//BIoTopeThe number of Internet of Things (IoT) vendors is rapidly growing, providing solutions for all levels of the IoT stack. Despite the universal agreement on the need for a standardized technology stack, following the model of the world-wide-web, a large number of industry-driven domain specific standards hinder the development of a single IoT ecosystem. An attempt to solve this challenge is the introduction of O-MI (Open Messaging Interface) and O-DF (Open Data Format), two domain independent standards published by Open Group. Despite their good compatibility, they define no specific security model. This paper takes the first step of defining a security model for these standards by proposing suitable access control and authentication mechanisms that can regulate the rights of different principles and operations defined in these standards. First, a brief introduction is provided of the O-MI and O-DF standards, including a comparison with existing standards. Second, the envisioned security model is presented, together with the implementation details of the Plug-in Module developed for the O-MI and O-DF reference implementation.Peer reviewe

Monga, Hitesh Chander - One of the best experts on this subject based on the ideXlab platform.

  • An OAuth-based Authentication Mechanism for Open Messaging Interface Standard
    'Scitepress', 2020
    Co-Authors: Monga, Hitesh Chander, Kinnunen Tuomas, Malhi Avleen, Javed Asad, Främling Kary
    Abstract:

    The Internet of Things (IoT) security and privacy remain a major challenge, especially due to the highly scalable and distributed nature of IoT networks. IoT security has an exceptionally wide scope which also leads to the most demanding requirements needed for the widespread realization of many IoT visions. It includes the tasks such as trusted sensing, computation, communication, privacy in terms of security scope. A large number of industry-driven domain specific standards has been developed which hinder the development of a single IoT ecosystem. O-MI and O-DF standards were previously proposed to address the challenge of interoperability in IoT devices. This paper highlights and discusses the measures taken to enhance the security of these standards by integration of OAuth 2.0 service provider functionality with the O-MI authentication Module along with the existing security Module. The security architecture has been proposed which enhances the security features by providing autho rization without use of certificates. The implementation details of the Plug-in Module for envisioned security model developed for the O-MI and O-DF standards have been discussed.WASP Professor K Främlin

  • An OAuth-based Authentication Mechanism for Open Messaging Interface Standard
    'Scitepress', 2020
    Co-Authors: Monga, Hitesh Chander, Kinnunen Tuomas, Malhi Avleen, Javed Asad, Främling Kary
    Abstract:

    Tuhosin alkuperäisen hyvin vajaan tietueen. Siinä oli mukana tiedosto, mutta se ei auennut.The Internet of Things (IoT) security and privacy remain a major challenge, especially due to the highly scalable and distributed nature of IoT networks. IoT security has an exceptionally wide scope which also leads to the most demanding requirements needed for the widespread realization of many IoT visions. It includes the tasks such as trusted sensing, computation, communication, privacy in terms of security scope. A large number of industry-driven domain specific standards has been developed which hinder the development of a single IoT ecosystem. O-MI and O-DF standards were previously proposed to address the challenge of interoperability in IoT devices. This paper highlights and discusses the measures taken to enhance the security of these standards by integration of OAuth 2.0 service provider functionality with the O-MI authentication Module along with the existing security Module. The security architecture has been proposed which enhances the security features by providing authorization without use of certificates. The implementation details of the Plug-in Module for envisioned security model developed for the O-MI and O-DF standards have been discussed.Peer reviewe

Filippov Roman - One of the best experts on this subject based on the ideXlab platform.

  • Authentication and Access Control for Open Messaging Interface Standard
    'Association for Computing Machinery (ACM)', 2017
    Co-Authors: Yousefnezhad Narges, Javed Asad, Filippov Roman, Buda Andrea, Madhikermi Manik, Främling Kary
    Abstract:

    | openaire: EC/H2020/688203/EU//BIoTopeThe number of Internet of Things (IoT) vendors is rapidly growing, providing solutions for all levels of the IoT stack. Despite the universal agreement on the need for a standardized technology stack, following the model of the world-wide-web, a large number of industry-driven domain specific standards hinder the development of a single IoT ecosystem. An attempt to solve this challenge is the introduction of O-MI (Open Messaging Interface) and O-DF (Open Data Format), two domain independent standards published by Open Group. Despite their good compatibility, they define no specific security model. This paper takes the first step of defining a security model for these standards by proposing suitable access control and authentication mechanisms that can regulate the rights of different principles and operations defined in these standards. First, a brief introduction is provided of the O-MI and O-DF standards, including a comparison with existing standards. Second, the envisioned security model is presented, together with the implementation details of the Plug-in Module developed for the O-MI and O-DF reference implementation.Peer reviewe

  • Security model for the Open Messaging Interface (O-MI) Protocol
    2016
    Co-Authors: Filippov Roman
    Abstract:

    The continuous improvements of computing, networking, storage and sensing technologies together with diffusion of “always-on” internet connectivity is boosting the development of the so-called Internet of Things (IoT). The number of IoT vendors is also rapidly growing, providing solutions for all levels of the IoT stack. Despite the universal agreement on the need of a standardized technology stack (following the model of the world-wide-web), there is a proliferation of industry-driven domain specific standards that are hindering the development of a single IoT ecosystem. An attempt to solve this situation is the introduction of O-MI (Open Messaging Interface) and O-DF (Open Data Format), two domain independent standards published by the Open Group. The standards do not define any specific security model, and this thesis work tries to define suitable access control and authentication mechanisms that can regulate the rights of different principals and operations defined in these standards. First, an introduction of the O-MI and O-DF standards, including a comparison with existing standards is provided. Then, envisioned security model is presented, together with the implementation details of the Plug-in Module developed for the O-MI and O-DF reference implementation

Kinnunen Tuomas - One of the best experts on this subject based on the ideXlab platform.

  • An OAuth-based Authentication Mechanism for Open Messaging Interface Standard
    'Scitepress', 2020
    Co-Authors: Monga, Hitesh Chander, Kinnunen Tuomas, Malhi Avleen, Javed Asad, Främling Kary
    Abstract:

    The Internet of Things (IoT) security and privacy remain a major challenge, especially due to the highly scalable and distributed nature of IoT networks. IoT security has an exceptionally wide scope which also leads to the most demanding requirements needed for the widespread realization of many IoT visions. It includes the tasks such as trusted sensing, computation, communication, privacy in terms of security scope. A large number of industry-driven domain specific standards has been developed which hinder the development of a single IoT ecosystem. O-MI and O-DF standards were previously proposed to address the challenge of interoperability in IoT devices. This paper highlights and discusses the measures taken to enhance the security of these standards by integration of OAuth 2.0 service provider functionality with the O-MI authentication Module along with the existing security Module. The security architecture has been proposed which enhances the security features by providing autho rization without use of certificates. The implementation details of the Plug-in Module for envisioned security model developed for the O-MI and O-DF standards have been discussed.WASP Professor K Främlin

  • An OAuth-based Authentication Mechanism for Open Messaging Interface Standard
    'Scitepress', 2020
    Co-Authors: Monga, Hitesh Chander, Kinnunen Tuomas, Malhi Avleen, Javed Asad, Främling Kary
    Abstract:

    Tuhosin alkuperäisen hyvin vajaan tietueen. Siinä oli mukana tiedosto, mutta se ei auennut.The Internet of Things (IoT) security and privacy remain a major challenge, especially due to the highly scalable and distributed nature of IoT networks. IoT security has an exceptionally wide scope which also leads to the most demanding requirements needed for the widespread realization of many IoT visions. It includes the tasks such as trusted sensing, computation, communication, privacy in terms of security scope. A large number of industry-driven domain specific standards has been developed which hinder the development of a single IoT ecosystem. O-MI and O-DF standards were previously proposed to address the challenge of interoperability in IoT devices. This paper highlights and discusses the measures taken to enhance the security of these standards by integration of OAuth 2.0 service provider functionality with the O-MI authentication Module along with the existing security Module. The security architecture has been proposed which enhances the security features by providing authorization without use of certificates. The implementation details of the Plug-in Module for envisioned security model developed for the O-MI and O-DF standards have been discussed.Peer reviewe