English

TriSweep: A Four-Drone Swarm Framework for Electromagnetic Side-Channel Analysis

Cryptography and Security 2026-05-22 v1 Emerging Technologies Robotics Systems and Control Systems and Control

Abstract

Electromagnetic (EM) side-channel analysis traditionally assumes a stationary, close-proximity probe - a threat model that underestimates aerial adversaries. TriSweep is a simulation framework that designs and evaluates a four-drone swarm architecture for autonomous standoff EM-SCA of embedded microcontrollers at 0.25-1.5 m. Three spatially specialized collector drones - Anchor (full-spectrum), Mask Probe (mask-register loading leakage), and Cipher Probe (masked SubBytes output leakage) - feed a stationary Accumulator drone that performs coherent combining (+4.8 dB SNR gain) and second-order mask cancellation via a centered product of the two spatially separated leakage streams. Evaluated against three real ANSSI ASCAD datasets (ATmega8515 masked AES-128 and 50/100-sample desynchronized variants), the framework achieves a simulated key rank of 18 +/- 1.7 (five-seed) at 0.25 m on the primary masked dataset. Profiling-trace cross-correlation alignment reduces single-drone rank from 89 to 21 on the 100-sample-jitter variant, demonstrating compensation for drone hover vibration. A two-channel CNN in the Accumulator converges to a loss of 0.454 (vs. random baseline 5.545) and improves rank on desynchronized datasets. No physical hardware has been fabricated; prototype construction is the planned next step.

Cite

@article{arxiv.2605.22709,
  title  = {TriSweep: A Four-Drone Swarm Framework for Electromagnetic Side-Channel Analysis},
  author = {Eric Yocam and Varghese Vaidyan},
  journal= {arXiv preprint arXiv:2605.22709},
  year   = {2026}
}

Comments

Simulation framework + systems design for a four-drone swarm performing standoff electromagnetic side-channel analysis. No hardware fabricated yet

R2 v1 2026-07-22T07:26:41.804Z