A lightweight LFSR-Based strong physical unclonable function design on FPGA

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Abstract

Physical unclonable function (PUF), a reliable physical security primitive, can be implemented in FPGAs and ASICs. Strong PUF is an important PUF classification that provides a large 'Challenge-Response' pairs (CRP) space for device authentication. However, most of the traditional strong PUF designs represented by the arbiter PUF are difficult to implement on FPGA. We propose a new lightweight strong PUF design that can dynamically reconfigure while maintaining high entropy and large CRP space. We implement the PUF on a 28-nm FPGA. The experimental results show that the uniformity of the PUF is 49.8%, the uniqueness is 49.9%, which is close to the ideal value, and the hardware overhead is very small. This design is easy to implement and suitable for device authentication on FPGA.

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Hou, S., Guo, Y., & Li, S. (2019). A lightweight LFSR-Based strong physical unclonable function design on FPGA. IEEE Access, 7, 64778–64787. https://doi.org/10.1109/ACCESS.2019.2917259

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