COCO: Cognitive Operating System with Continuous Oversight for Multi-Agent Workflow Reliability
Churong Liang, Jinling Gan, Kairan Hong, Qiushi Tian, Zongze Wu, Runnan Li

TL;DR
COCO introduces a novel framework for multi-agent systems that enhances reliability through continuous oversight, error correction, and efficient verification, significantly improving performance while reducing model size.
Contribution
The paper presents a theoretically grounded, decoupled architecture with three innovative algorithms for error detection and correction in multi-agent systems.
Findings
Achieves 6.5% average performance improvement on benchmarks.
Reaches 95.1% of large-model performance with 30x fewer parameters.
Demonstrates practical deployment benefits in autonomous domains.
Abstract
A critical limitation in large-scale multi-agent systems is the cascading of errors. And without intermediate verification, downstream agents exacerbate upstream inaccuracies, resulting in significant quality degradation. To bridge this gap, we introduce \textbf{COCO} (\textbf{C}ognitive \textbf{O}perating System with \textbf{C}ontinuous \textbf{O}versight), a theoretically grounded framework for asynchronous self-monitoring and adaptive error correction in multi-agent systems. COCO reconciles the fundamental tension between quality assurance and computational efficiency via a novel decoupled architecture. This design isolates error detection from the critical execution path and incorporates an automated configuration engine to minimize deployment complexity. The framework relies on three algorithmic innovations to mitigate both systematic and stochastic errors: (1) a Contextual…
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Taxonomy
TopicsBusiness Process Modeling and Analysis · AI-based Problem Solving and Planning · Cognitive Science and Mapping
