arXiv:2506.16087cs.AIcs.DB2025-06中稿 · IEEE ETFA 2025 and…被引 2

用语义规则验证制造流程中参数依赖的准确性与完整性。

Consistency Verification in Ontology-Based Process Models with Parameter Interdependencies

  • 通过SPARQL筛选相关工艺数据,确保上下文匹配。
  • 基于单位标注和语义分类检查变量单位一致性。
  • 验证参数表达式所需输入数据是否完整可用。

利用本体形式化制造过程知识,可实现参数间依赖关系的一致建模。这些依赖通常以数学表达式表示,用于计算、验证和仿真。为支持跨场景应用与知识复用,表达式常以通用形式定义并应用于多种工艺场景。这要求模型具备一致且语义连贯性,以确保数据检索与解释的正确性。因此需解决关键挑战:选择上下文相关的数据、保证变量与数据元素的单位兼容性,以及验证数学表达式求值所需的输入数据完整性。本文提出一套验证机制,针对已有的本体化工艺模型,该模型整合了标准化过程语义、数据元素定义及形式化数学结构。方法包括:(i) 基于SPARQL的过滤以获取工艺相关数据;(ii) 基于预期单位标注与语义分类的单位一致性检查;(iii) 数据完备性检查以验证依赖关系的可求值性。在树脂传递模塑(RTM)案例中验证了该方法的适用性,支持构建可机器解析且可验证的工程模型。

原文摘要 · Abstract (English)

The formalization of process knowledge using ontologies enables consistent modeling of parameter interdependencies in manufacturing. These interdependencies are typically represented as mathematical expressions that define relations between process parameters, supporting tasks such as calculation, validation, and simulation. To support cross-context application and knowledge reuse, such expressions are often defined in a generic form and applied across multiple process contexts. This highlights the necessity of a consistent and semantically coherent model to ensure the correctness of data retrieval and interpretation. Consequently, dedicated mechanisms are required to address key challenges such as selecting context-relevant data, ensuring unit compatibility between variables and data elements, and verifying the completeness of input data required for evaluating mathematical expressions. This paper presents a set of verification mechanisms for a previously developed ontology-based process model that integrates standardized process semantics, data element definitions, and formal mathematical constructs. The approach includes (i) SPARQL-based filtering to retrieve process-relevant data, (ii) a unit consistency check based on expected-unit annotations and semantic classification, and (iii) a data completeness check to validate the evaluability of interdependencies. The applicability of the approach is demonstrated with a use case from Resin Transfer Molding (RTM), supporting the development of machine-interpretable and verifiable engineering models.

本体建模参数依赖数据验证制造流程

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