| With the rapid development of information technology and the comprehensive promotion of service-oriented software architecture,the construction of digital intelligent school platform has attracted more and more researchers and engineers’ attention.Relying on the digital intelligent school platform,we can integrate resources and information,including teaching,scientific research,campus life,social services and other aspects more comprehensively and deeply,and realize the modernization and intellectualization of campus management.As an important part of the management platform of digital intelligent school,school logistics management provides service support to the whole school in the field of logistics and related business.It is a systematic project involving the widest field,the largest population and the most complicated business in the process of building digital chemical school.Service-Oriented Architecture(SOA)can organize and manage various components loosely coupled through interface definition and communication contract between services,and provide scalability and maintainability of software system design and development.It has been widely used in many business areas and achieved remarkable results.This paper focuses on the software design and development of digital school logistics information management system.The main work includes: 1.Analysis of school logistics information management system,abstract modeling of core business processes using UML activity diagrams,business analysis models such as collaborative office management,fixed assets management,and use case diagrams for use case analysis and description of core functions.Describe and clarify the functional requirements of the core business of the system.2.The design of school logistics information management system,describes the overall architecture design of the system,describes the hierarchical architecture of the system,including data platform layer,service platform layer,application service layer and unified entrance;puts forward the design scheme of the system functional module division;carries on the detailed design of the system,including the system functional logic design scheme,the system UI design scheme and the design scheme of system database.3.System implementation and testing.Selecting representative interfaces in the process of system operation to describe the system implementation and operation effect,describing the process and test results of functional testing of the core function points of the system,and carrying out system performance testing. |