English

Jiao: Bridging Isolation and Customization in Mixed Criticality Robotics

Robotics 2026-05-06 v1 Human-Computer Interaction

Abstract

Consumer robotics demands consolidation of safety-critical control, perception pipelines, and user applications on shared multicore platforms. While static partitioning hypervisors provide hardware-enforced isolation, directly transplanting automotive architectures encounters an expertise asymmetry problem in which end-users modifying robot behavior lack the systems knowledge that platform developers possess. We present an architecture addressing this challenge through three integrated components. A Safe IO Cell provides hardware-level override capability. A Parameter Synchronization Service encapsulates cross-domain complexity. A Safety Communication Layer implements IEC~61508-aligned verification. Our empirical evaluation on an ARM Cortex-A55 platform demonstrates that partition isolation reduces cycle-period jitter by 84.5\% and cuts tail timing error by nearly an order of magnitude (p99 |jitter| from 69.0\,μ\mus to 7.8\,μ\mus), eliminating all >>50\,μ\mus~excursions.

Keywords

Cite

@article{arxiv.2605.03641,
  title  = {Jiao: Bridging Isolation and Customization in Mixed Criticality Robotics},
  author = {James Yen and Zhibai Huang and Zhixiang Wei and Tinghao Yi and Shupeng Zeng and Liang Pang and Songtao Xue and Zhengwei Qi},
  journal= {arXiv preprint arXiv:2605.03641},
  year   = {2026}
}

Comments

Accepted by Infocom'26 Embodied Intelligence Networks workshop

R2 v1 2026-07-01T12:50:39.922Z