Semantic Web Service Architecture for Simulation Model Reuse

David Bell, Sergio de Cesare, M. Lycett, N. Mustafee, Simon J. E. Taylor
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引用次数: 18

Abstract

COTS simulation packages (CSPs) have proved popular in an industrial setting with a number of software vendors. In contrast, options for re-using existing models seem more limited. Re-use of simulation component models by collaborating organizations is restricted by the same semantic issues however that restrict the inter-organization use of web services. The current representations of web components are predominantly syntactic in nature lacking the fundamental semantic underpinning required to support discovery on the emerging semantic web. Semantic models, in the form of ontology, utilized by web service discovery and deployment architecture provide one approach to support simulation model reuse. Semantic interoperation is achieved through the use of simulation component ontology to identify required components at varying levels of granularity (including both abstract and specialized components). Selected simulation components are loaded into a CSP, modified according to the requirements of the new model and executed. The paper presents the development of ontology, connector software and web service discovery architecture in order to understand how such ontology are created, maintained and subsequently used for simulation model reuse. The ontology is extracted from health service simulation - comprising hospitals and the National Blood Service. The ontology engineering framework and discovery architecture provide a novel approach to inter- organization simulation, uncovering domain semantics and adopting a less intrusive interface between participants. Although specific to CSPs the work has wider implications for the simulation community.
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仿真模型重用的语义Web服务体系结构
COTS仿真包(csp)已被证明在工业环境中受到许多软件供应商的欢迎。相比之下,重用现有模型的选择似乎更有限。协作组织对仿真组件模型的重用受到同样的语义问题的限制,然而这些问题也限制了web服务在组织间的使用。当前web组件的表示在本质上主要是语法性的,缺乏支持新兴语义web发现所需的基本语义基础。web服务发现和部署体系结构利用本体形式的语义模型为支持仿真模型重用提供了一种方法。语义互操作是通过使用模拟组件本体来识别不同粒度级别的所需组件(包括抽象组件和专门化组件)来实现的。将选定的仿真组件加载到CSP中,根据新模型的要求进行修改并执行。本文介绍了本体、连接器软件和web服务发现体系结构的发展,以了解这些本体是如何创建、维护和随后用于仿真模型重用的。本体是从卫生服务模拟中提取的——包括医院和国家血液服务。本体工程框架和发现体系结构为组织间仿真提供了一种新的方法,揭示了领域语义,并在参与者之间采用了侵入性较小的接口。虽然特定于csp,但这项工作对模拟社区具有更广泛的影响。
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