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The Technical Design And Implementation Of Earthquake Precursor Instrument Integrated Management System Based On S2SH Framework

Posted on:2015-02-24Degree:MasterType:Thesis
Country:ChinaCandidate:D N WangFull Text:PDF
GTID:2180330467463009Subject:Solid Geophysics
Abstract/Summary:PDF Full Text Request
As the implementation of China Earthquake Administration’s9th and10th five-year plan, the Earthquake Precursor Database System and someprofessional software systems are established.So a mature earthquakeprecursor business process is formed, which includes precursory data’scollection, management, processing, monitoring, and service. However,the earthquake precursory business is still lack of a unified managementsoftware system for precursory instruments’ operation and related data.Based on this demand, this thesis discusses how to develop the IntegratedManagement System of Earthquake Precursor Instruments according to thesoftware engineering disciplines.A management system can organically combine some essential factorsof management together, such as administrator, management object, etc;and make them work according to the management target. The IntegratedManagement System of Earthquake Precursor Instruments manages theearthquake precursory instruments’ whole life cycle. It also has somefunctional modules, with which we can maintain the normal operation ofthe management system, such as information display and system maintenance.All of them form an organic whole, which has clear objectives, stableoperation and powerful functionality and can provide convenience for thewhole earthquake precursory business.As a lightweight application of J2EE, the S2SH framework is widelyused in the developments of small and medium software systems. The threetier architecture of the S2SH framework conforms to MVC architecture idea.This framework also has good scalability, maintainability and decoupling.With all these advantages, the S2SH framework is the first choice of oursystem’s development.Taking the actual development process as the main line, this thesisdiscusses how to develop an integrated management system of earthquakeprecursor instrument. I write it according to the specification for degreethesis writing and software system development process. First of all, thisthesis introduces the system development background and reasons, describes its content area, objectives and structure. Secondly, thethesis describes the demands that client provided before the systemdevelopment in detail, including the system overall demand, functionaland non-functional requirements, designed to enable readers to fullyunderstand the inner cause of the system development. Thirdly, this thesisdescribes the architecture, framework and core technology of the systemused in the development. Following the guidance of the contents of systemrequirements analysis, it discusses the core contents of the outlinedesign stage of the system, including the system architecture, functionalstructure, database,front-end display, etc. Then, according to the systempreliminary design; the thesis describes the overall detailed design, andtaking a single sub-module development as an example, to show the readerthe process of code development and module testing. Finally, through thevarious stages of the development of exposition, the thesis makes anin-depth summary, and discusses the prospects for the development of thesystem. Sum up now, and look into the future.
Keywords/Search Tags:Struts2, Hibernate, Spring, Precursory instrument management, Architecture
PDF Full Text Request
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