MulBERRY: Enabling Bit-Error Robustness for Energy-Efficient Multi-Agent Autonomous Systems
Zishen Wan, Nandhini Chandramoorthy, Karthik Swaminathan, Pin-Yu Chen, Kshitij Bhardwaj, Vijay Janapa Reddi, Arijit Raychowdhury
Abstract
The adoption of autonomous swarms, consisting of a multitude of unmanned aerial vehicles (UAVs), operating in a collaborative manner, has become prevalent in mainstream application domains for both military and civilian purposes. These swarms are expected to collaboratively carry out navigation tasks and employ complex reinforcement learning (RL) models within the stringent onboard size, weight, and power constraints. While techniques such as reducing onboard operating voltage can improve the energy efficiency of both computation and flight missions, they can lead to on-chip bit failures that are detrimental to mission safety and performance.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext 8d9169e3-7e61-495d-a970-ef12e743a157Cited by top-tier papers3
- SAVE: Software-Implemented Fault Tolerance for Model Inference against GPU Memory Bit FlipsWenxin Zheng, Bin Xu, Jinyu Gu, Haibo ChenUSENIX ATC 2025 · 8 citations
- ReaLM: Reliable and Efficient Large Language Model Inference with Statistical Algorithm-Based Fault ToleranceTong Xie, Jiawang Zhao, Zishen Wan, Zuodong Zhang et al.DAC 2025 · 4 citations
- CREATE: Cross-Layer Resilience Characterization and Optimization for Efficient yet Reliable Embodied AI SystemsTong Xie, Yijiahao Qi, Jinqi Wen, Zishen Wan et al.ASPLOS 2026 · 1 citation
Related papers
- BERRY: Bit Error Robustness for Energy-Efficient Reinforcement Learning-Based Autonomous SystemsZishen Wan, Nandhini Chandramoorthy, Karthik Swaminathan, Pin-Yu Chen et al.DAC 2023 · 7 citations
- UAV: A Unified and Adaptive Scheduling Framework for UAV Autopilot System with Reinforcement LearningZeying Li, shuai zhao, Chaowen Wu, Boyang Li et al.ICML 2026
- Two-Way Aerial Secure Communications via Distributed Collaborative Beamforming under Eavesdropper CollusionJiahui Li, Geng Sun, Qingqing Wu, Shuang Liang et al.INFOCOM 2024 · 9 citations
- Exploring both Individuality and Cooperation for Air-Ground Spatial Crowdsourcing by Multi-Agent Deep Reinforcement LearningYuxiao Ye, Chi Harold Liu, Zipeng Dai, Jianxin Zhao et al.ICDE 2023 · 26 citations
- Heuristic Algorithms for Co-scheduling of Edge Analytics and Routes for UAV Fleet MissionsAakash Khochare, Yogesh Simmhan, Francesco Betti Sorbelli, Sajal K. DasINFOCOM 2021 · 34 citations
