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E-science infrastructures for molecular modeling and parametrization

机译:用于分子建模和参数化的电子科学基础设施

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E-science infrastructures are becoming the essential tools for computational scientific research. In this paper, we describe two e-science infrastructures: Science and Engineering Applications Grid (SEAGrid) and molecular modeling and parametrization (ParamChem). The SEAGrid is a virtual organization with a diverse set of hardware and software resources and provides services to access such resources in a routine and transparent manner. These essential services include allocations of computational resources, client-side application interfaces, computational job and data management tools, and consulting activities. ParamChem is another e-science project dedicated for molecular force-field parametrization based on both ab-initio and molecular mechanics calculations on high performance computers (HPCs) driven by scientific workflow middleware services. Both the projects share a similar three-tier computational infrastructure that consists of a front-end client, a middleware web services layer, and a remote HPC computational layer. The client is a Java Swing desktop application with components for pre- and post-data processing, communications with middleware server and local data management. The middleware service is based on Axis2 web service and MySQL relational database, which provides functionalities for user authentication and session control, HPC resource information collections, discovery and matching, job information logging and notification. It can also be integrated with scientific workflow to manage computations on HPC resources. The grid credentials for accessing HPCs are delegated through MyProxy infrastructure. Currently SEAGrid has integrated several popular application software suites such as Gaussian for quantum chemistry, NAMD for molecular dynamics and engineering software such as Abacus for mechanical engineering. ParamChem has integrated CGenFF (CHARMM General Force-Field) for molecular force-field parametrization of drug-like molecules. Long-term storage of user data is handled by tertiary data archival mechanisms. SEAGrid science gateway serves more than 500 users while more than 1000 users use ParamChem services such as atom typing and initial force-field parameter guess at present.
机译:电子科学基础设施正在成为计算科学研究的基本工具。在本文中,我们描述了两个电子科学基础设施:科学与工程应用网格(SEAGrid)和分子建模与参数化(ParamChem)。 SEAGrid是一个虚拟组织,具有一组多样化的硬件和软件资源,并提供以常规和透明方式访问此类资源的服务。这些基本服务包括计算资源的分配,客户端应用程序接口,计算作业和数据管理工具以及咨询活动。 ParamChem是另一个电子科学项目,致力于基于由科学工作流中间件服务驱动的高性能计算机(HPC)上的从头计算和分子力学计算,从而进行分子力场参数化。这两个项目共享相似的三层计算基础结构,该基础结构由前端客户端,中间件Web服务层和远程HPC计算层组成。客户端是一个Java Swing桌面应用程序,具有用于数据前后处理,与中间件服务器的通信以及本地数据管理的组件。中间件服务基于Axis2 Web服务和MySQL关系数据库,该数据库提供了用于用户身份验证和会话控制,HPC资源信息收集,发现和匹配,作业信息记录和通知的功能。它还可以与科学工作流程集成,以管理HPC资源上的计算。通过MyProxy基础结构委派用于访问HPC的网格凭据。目前,SEAGrid已集成了多个流行的应用程序软件套件,例如用于量子化学的高斯,用于分子动力学的NAMD和用于机械工程的工程软件(例如Abacus)。 ParamChem已集成CGenFF(CHARMM通用力场),用于药物样分子的分子力场参数化。用户数据的长期存储由第三级数据归档机制处理。目前,SEAGrid科学网关为500多个用户提供服务,而1000多个用户使用ParamChem服务,例如原子键入和初始力场参数猜测。

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