arXiv:2602.12748cs.AIcs.HC2026-02

提出交互式解释系统架构,解决可解释AI落地难问题

X-SYS: A Reference Architecture for Interactive Explanation Systems

  • 构建以STAR四属性为核心的参考架构,分离前端与后端能力
  • 通过服务契约实现界面与计算独立演进,支持持续可用性
  • 适用于需长期维护的AI解释系统,尤其适合研究者与工程师

可解释人工智能(XAI)研究虽提出众多技术方法,但将其部署为系统仍面临挑战:交互式解释系统需在模型、数据不断变化及治理约束下保持解释可用性。本文认为,实现XAI应将其视为信息系统问题,用户交互催生特定系统需求。为此提出X-SYS,一种交互式解释系统的参考架构,指导研究者、开发者与实践者将解释用户界面(XUI)与系统能力连接。X-SYS围绕可扩展性、可追溯性、响应性和适应性(STAR)四个质量属性,定义五组件结构(XUI服务、解释服务、模型服务、数据服务、编排与治理)。它将交互模式映射到系统能力,解耦界面演化与后端计算。通过语义搜索与视觉语言模型激活调控系统SemanticLens实现该架构,验证了基于契约的服务边界支持独立演进,离线/在线分离保障响应性,持久状态管理增强可追溯性。本工作提供可复用蓝图与具体实例,支持在运营约束下实现端到端设计。

原文摘要 · Abstract (English)

The explainable AI (XAI) research community has proposed numerous technical methods, yet deploying explainability as systems remains challenging: Interactive explanation systems require both suitable algorithms and system capabilities that maintain explanation usability across repeated queries, evolving models and data, and governance constraints. We argue that operationalizing XAI requires treating explainability as an information systems problem where user interaction demands induce specific system requirements. We introduce X-SYS, a reference architecture for interactive explanation systems, that guides (X)AI researchers, developers and practitioners in connecting interactive explanation user interfaces (XUI) with system capabilities. X-SYS organizes around four quality attributes named STAR (scalability, traceability, responsiveness, and adaptability), and specifies a five-component decomposition (XUI Services, Explanation Services, Model Services, Data Services, Orchestration and Governance). It maps interaction patterns to system capabilities to decouple user interface evolution from backend computation. We implement X-SYS through SemanticLens, a system for semantic search and activation steering in vision-language models. SemanticLens demonstrates how contract-based service boundaries enable independent evolution, offline/online separation ensures responsiveness, and persistent state management supports traceability. Together, this work provides a reusable blueprint and concrete instantiation for interactive explanation systems supporting end-to-end design under operational constraints.

可解释AI系统架构交互设计语义搜索

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