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SpaceTEE: Secure and Tamper-Proof Computing in Space using CubeSats

  • arXiv (Cornell University)
  • Cornell University
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Paper overview

Abstract

Sensitive computation often has to be performed in a trusted execution environment (TEE), which, in turn, requires tamper-proof hardware. If the computational fabric can be tampered with, we may no longer be able to trust the correctness of the computation. We study the idea of using computational platforms in space as a means to protect data from adversarial physical access. In this paper, we propose SpaceTEE - a practical implementation of this approach using low-cost nano-satellites called CubeSats. We study the constraints of such a platform, the cost of deployment, and discuss possible applications under those constraints. As a case study, we design a hardware security module solution (called SpaceHSM) and describe how it can be used to implement a root-of-trust for a certi cate authority (CA).

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Publication details

DOI
10.48550/arxiv.1710.01430
OpenAlex
W2763032538
Document type
preprint
Language
EN
Source
arXiv (Cornell University)
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