首页> 外文期刊>BMC Bioinformatics >Bio-jETI: a framework for semantics-based service composition
【24h】

Bio-jETI: a framework for semantics-based service composition

机译:Bio-jETI:基于语义的服务组合框架

获取原文
           

摘要

Background The development of bioinformatics databases, algorithms, and tools throughout the last years has lead to a highly distributed world of bioinformatics services. Without adequate management and development support, in silico researchers are hardly able to exploit the potential of building complex, specialized analysis processes from these services. The Semantic Web aims at thoroughly equipping individual data and services with machine-processable meta-information, while workflow systems support the construction of service compositions. However, even in this combination, in silico researchers currently would have to deal manually with the service interfaces, the adequacy of the semantic annotations, type incompatibilities, and the consistency of service compositions. Results In this paper, we demonstrate by means of two examples how Semantic Web technology together with an adequate domain modelling frees in silico researchers from dealing with interfaces, types, and inconsistencies. In Bio-jETI, bioinformatics services can be graphically combined to complex services without worrying about details of their interfaces or about type mismatches of the composition. These issues are taken care of at the semantic level by Bio-jETI's model checking and synthesis features. Whenever possible, they automatically resolve type mismatches in the considered service setting. Otherwise, they graphically indicate impossible/incorrect service combinations. In the latter case, the workflow developer may either modify his service composition using semantically similar services, or ask for help in developing the missing mediator that correctly bridges the detected type gap. Newly developed mediators should then be adequately annotated semantically, and added to the service library for later reuse in similar situations. Conclusion We show the power of semantic annotations in an adequately modelled and semantically enabled domain setting. Using model checking and synthesis methods, users may orchestrate complex processes from a wealth of heterogeneous services without worrying about interfaces and (type) consistency. The success of this method strongly depends on a careful semantic annotation of the provided services and on its consequent exploitation for analysis, validation, and synthesis. We are convinced that these annotations will become standard, as they will become preconditions for the success and widespread use of (preferred) services in the Semantic Web.
机译:背景技术过去几年来,生物信息学数据库,算法和工具的发展已导致生物信息学服务的高度分散。没有足够的管理和开发支持,计算机研究人员几乎无法利用这些服务来构建复杂的专业分析过程。语义网旨在通过机器可处理的元信息彻底为单个数据和服务配备,而工作流系统则支持服务组合的构建。但是,即使采用这种组合,计算机技术研究人员当前也必须手动处理服务接口,语义注释的适当性,类型不兼容以及服务组合的一致性。结果在本文中,我们通过两个示例演示了语义Web技术以及适当的域建模如何使计算机研究人员从处理接口,类型和不一致问题中解放出来。在Bio-jETI中,可以将生物信息学服务图形化地组合为复杂的服务,而不必担心其接口的详细信息或组成的类型不匹配。 Bio-jETI的模型检查和综合功能可在语义级别解决这些问题。只要有可能,他们就会自动解决所考虑的服务设置中的类型不匹配。否则,它们以图形方式指示不可能/不正确的服务组合。在后一种情况下,工作流开发人员可以使用语义相似的服务来修改其服务组合,也可以寻求帮助以开发正确弥合检测到的类型鸿沟的缺失介体。然后,应该对新开发的中介程序进行语义上适当的注释,并将其添加到服务库中,以便以后在类似情况下重用。结论我们在充分建模和语义启用的域设置中显示了语义注释的功能。使用模型检查和综合方法,用户可以从大量的异构服务中编排复杂的流程,而不必担心接口和(类型)的一致性。该方法的成功很大程度上取决于所提供服务的仔细语义标注以及其随后用于分析,验证和综合的利用。我们相信,这些注释将成为标准,因为它们将成为成功和在语义Web中广泛使用(首选)服务的前提。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号