arXiv:2504.18636cs.CRcs.AI2025-04被引 3

用梯度优化模糊系统,实现高精度且可解释的钓鱼网址检测

A Gradient-Optimized TSK Fuzzy Framework for Explainable Phishing Detection

  • 基于一阶TSK模糊模型,用Adam优化器提升参数精度
  • 在23.5万条网址上达到99.95%准确率,AUC为1.00
  • 规则和隶属函数可解释,适合需要透明决策的安全部门

钓鱼攻击对个人和组织构成日益复杂且普遍的威胁,导致重大经济损失、身份盗用及机构声誉受损。现有检测方法常难以兼顾高准确率与可解释性,或无法识别新型攻击,或作为黑箱模型运行。为此,我们提出一种基于一阶Takagi-Sugeno-Kang(TSK)模糊推理模型的新型钓鱼网址检测系统,通过梯度优化技术进行参数调优,结合模糊逻辑的可解释性与梯度优化的精准适应能力,特别采用Adam优化器实现高效参数调整。在包含超过23.5万条网址的综合数据集上实验表明,模型收敛迅速,预测性能卓越(5折交叉验证下平均准确率达99.95%,AUC为1.00)。优化后的模糊规则与隶属函数提升了可解释性,清晰展示模型决策过程,对网络安全应用至关重要。该高性能、透明、可解释的检测框架显著提升了当前网络安全防御能力,为从业者提供准确且可理解的决策工具。

原文摘要 · Abstract (English)

Phishing attacks represent an increasingly sophisticated and pervasive threat to individuals and organizations, causing significant financial losses, identity theft, and severe damage to institutional reputations. Existing phishing detection methods often struggle to simultaneously achieve high accuracy and explainability, either failing to detect novel attacks or operating as opaque black-box models. To address this critical gap, we propose a novel phishing URL detection system based on a first-order Takagi-Sugeno-Kang (TSK) fuzzy inference model optimized through gradient-based techniques. Our approach intelligently combines the interpretability and human-like reasoning capabilities of fuzzy logic with the precision and adaptability provided by gradient optimization methods, specifically leveraging the Adam optimizer for efficient parameter tuning. Experiments conducted using a comprehensive dataset of over 235,000 URLs demonstrate rapid convergence, exceptional predictive performance (accuracy averaging 99.95% across 5 cross-validation folds, with a perfect AUC i.e. 1.00). Furthermore, optimized fuzzy rules and membership functions improve interoperability, clearly indicating how the model makes decisions - an essential feature for cybersecurity applications. This high-performance, transparent, and interpretable phishing detection framework significantly advances current cybersecurity defenses, providing practitioners with accurate and explainable decision-making tools.

钓鱼检测模糊系统可解释性网络安全

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