The growing popularity of neuro symbolic reasoning has led to the adoption of various forms of differentiable (i.e., fuzzy) first order logic. We introduce PyReason, a software framework based on generalized annotated logic that both captures the current cohort of differentiable logics and temporal extensions to support inference over finite periods of time with capabilities for open world reasoning. Further, PyReason is implemented to directly support reasoning over graphical structures (e.g., knowledge graphs, social networks, biological networks, etc.), produces fully explainable traces of inference, and includes various practical features such as type checking and a memory-efficient implementation. This paper reviews various extensions of generalized annotated logic integrated into our implementation, our modern, efficient Python-based implementation that conducts exact yet scalable deductive inference, and a suite of experiments. PyReason is available at: github.com/lab-v2/pyreason.
PyReason: Software for Open World Temporal Logic
PyReason is a neuro-symbolic reasoning framework that supports differentiable and temporal first-order logic, enabling inference over graphical structures with explainable results and efficient implementation.
- Year
- 2023
- Venue
- arXiv 2023
- Authors
- 5
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- arxiv.org/abs/2302.13482v3ARXIV-DEFAULT
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