用代数方法预测国际关系长期演变轨迹,可解释且避免大模型幻觉。
Ontological Trajectory Forecasting via Finite Semigroup Iteration and Lie Algebra Approximation in Geopolitical Knowledge Graphs
- 将国际关系建模为可组合的动态模式,用有限半群迭代演化
- 通过8维李代数空间计算模式相似性,预测最终稳定状态
- 输出可解释的置信度和分叉点,适合政策分析与风险预警
我们提出EL-DRUIN,一种用于地缘政治情报分析的本体推理系统,结合形式本体、有限半群代数与李代数近似,预测长期关系演变轨迹。现有基于大模型的政治分析系统仅依赖文本模式匹配,而EL-DRUIN将地缘关系视为有限命名动态模式的状态,通过定义显式组合表的半群运算进行模式组合,并将每种模式嵌入8维语义李代数空间。前向模拟通过迭代半群运算,生成各离散时间步的可达模式集;收敛至幂等吸收态(即组合运算的不动点)即为预测的长期吸引子。贝叶斯后验权重结合本体导出的置信先验与李空间余弦相似度项,给出可解释且校准的概率,非语言模型自报。检测到双吸引子后验质量接近的分叉点并暴露给下游分析。我们在六种地缘政治情景中验证框架,包括中美科技脱钩与台海军事施压轨迹。该架构开源,提供Streamlit前端,可追踪完整计算过程、后验分解及8维本体状态向量。
原文摘要 · Abstract (English)
We present EL-DRUIN, an ontological reasoning system for geopolitical intelligence analysis that combines formal ontology, finite semigroup algebra, and Lie algebra approximation to forecast long-run relationship trajectories. Current LLM-based political analysis systems operate as summarisation engines, producing outputs bounded by textual pattern matching. EL-DRUIN departs from this paradigm by modelling geopolitical relationships as states in a finite set of named Dynamic Patterns, composing patterns via a semigroup operation whose structure constants are defined by an explicit composition table, and embedding each pattern as a vector in an 8-dimensional semantic Lie algebra space. Forward simulation iterates this semigroup operation, yielding reachable pattern sets at each discrete timestep; convergence to idempotent absorbing states (fixed points of the composition) constitutes the predicted long-run attractor. Bayesian posterior weights combine ontology-derived confidence priors with a Lie similarity term measuring the cosine similarity between the vector sum of composing patterns and the target pattern vector, providing interpretable, calibrated probabilities that are not self-reported by a language model. Bifurcation points -- steps at which two candidate attractors have near-equal posterior mass -- are detected and exposed to downstream analysis. We demonstrate the framework on six geopolitical scenarios including US-China technology decoupling and the Taiwan Strait military coercion trajectory. The architecture is publicly available as an open-source system with a Streamlit frontend exposing full computation traces, Bayesian posterior breakdowns, and 8D ontological state vectors.
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