arXiv:2509.20729cs.AIcs.HC2025-09被引 1

提出可鲁棒、可观测、可演化智能体工程框架,实证提升移动端智能体性能。

Robust, Observable, and Evolvable Agentic Systems Engineering: A Principled Framework Validated via the Fairy GUI Agent

  • 分三阶段构建:运行时目标精炼、可观测认知架构、进化记忆双循环。
  • 在真实复杂任务上,用户需求完成率比最优基线高33.7%。
  • 适合追求可维护、可调试、可长期优化的智能体系统开发者。

智能体范式面临软件工程缺失问题,导致智能体普遍缺乏鲁棒性、可观测性和可演化性。为此,我们提出一个基于运行时目标精炼(RGR)、可观测认知架构(OCA)和进化记忆架构(EMA)的系统性工程框架。RGR通过知识约束与人机协同实现意图对齐;OCA通过组件解耦、逻辑分层与状态控制分离构建可维护白盒结构;EMA采用执行-演化双循环机制保障长期可演化性。我们实现了基于该框架的Fairy移动GUI智能体,并在新提出的RealMobile-Eval基准上进行验证。Fairy在复杂模糊任务中用户需求完成率比最佳基线高出33.7%。控制实验、人类参与研究及消融实验进一步证实:RGR提升精炼准确率并防止意图偏离;OCA增强可维护性;EMA对长期性能至关重要。本研究为构建可靠、可观测、可演化的智能体系统提供了实证支持的技术规范与实践蓝图。

原文摘要 · Abstract (English)

The Agentic Paradigm faces a significant Software Engineering Absence, yielding Agentic systems commonly lacking robustness, observability, and evolvability. To address these deficiencies, we propose a principled engineering framework comprising Runtime Goal Refinement (RGR), Observable Cognitive Architecture (OCA), and Evolutionary Memory Architecture (EMA). In this framework, RGR ensures robustness and intent alignment via knowledge-constrained refinement and human-in-the-loop clarification; OCA builds an observable and maintainable white-box architecture using component decoupling, logic layering, and state-control separation; and EMA employs an execution-evolution dual-loop for evolvability. We implemented and empirically validated Fairy, a mobile GUI agent based on this framework. On RealMobile-Eval, our novel benchmark for ambiguous and complex tasks, Fairy outperformed the best SoTA baseline in user requirement completion by 33.7%. Subsequent controlled experiments, human-subject studies, and ablation studies further confirmed that the RGR enhances refinement accuracy and prevents intent deviation; the OCA improves maintainability; and the EMA is crucial for long-term performance. This research provides empirically validated specifications and a practical blueprint for building reliable, observable, and evolvable Agentic AI systems.

智能体系统可演化可观测移动端

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