The medical profession, the Internet of Things (IoT), and academic research are just a few of the areas where augmented reality (AR) has making ground-breaking strides. One such industrial application that requires the placement of massive metal components is vehicle assembly. That is to say, AR provides the support for users in dynamic and on-demand basis. Currently, AR users’ needs of quick response from service providers. Microsoft HoloLen is an ongoing AR device where overlaying holograms and control them via transformation techniques is the greatest way to perform AR. HoloLens AR device utilizes a transparent lens for each eye to render virtual images and also normal vision. The proposed work has two processes such as AR User Authentication, sensitivity-based access control. For secure AR system, we first authenticate the AR users in order to prevent the unauthorized access by using SHA256 algorithm. In next, the access control policy is verified in the fog layer for all official service requests. As some of the AR services are high sensitive (like Medical, Industries), we tend to apply access policies for the sensitive AR requests.

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Microsoft HoloLens: Blockchain Assisted Wearable Augmented Reality in a Safety Critical System

  • Rajesh Singh,
  • Anita Gehlot,
  • Shailendra Thapliyal,
  • Sansar Singh Chauhan,
  • Sanjeev Kumar,
  • Shivam Kumar,
  • Aashna Sinha

摘要

The medical profession, the Internet of Things (IoT), and academic research are just a few of the areas where augmented reality (AR) has making ground-breaking strides. One such industrial application that requires the placement of massive metal components is vehicle assembly. That is to say, AR provides the support for users in dynamic and on-demand basis. Currently, AR users’ needs of quick response from service providers. Microsoft HoloLen is an ongoing AR device where overlaying holograms and control them via transformation techniques is the greatest way to perform AR. HoloLens AR device utilizes a transparent lens for each eye to render virtual images and also normal vision. The proposed work has two processes such as AR User Authentication, sensitivity-based access control. For secure AR system, we first authenticate the AR users in order to prevent the unauthorized access by using SHA256 algorithm. In next, the access control policy is verified in the fog layer for all official service requests. As some of the AR services are high sensitive (like Medical, Industries), we tend to apply access policies for the sensitive AR requests.