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高校课堂微信扫码签到平台客户端设计研究

机译:高校课堂微信扫码签到平台客户端设计研究

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针对目前高校课堂考勤存在的问题,基于微信平台和JavaEE,采用移动设备作为签到终端,设计课堂扫码签到平台。该平台基于B/S模式,采用SSM五层架构,设计签到平台架构、服务器端和客户端软件结构、数据以及关键问题解决方案。重点研究客户端微信公众平台对接、时效二维码生成、扫码、随机抽查、统计等关键模块的业务流程、类与接口以及功能的设计,实现了高校课堂实时考勤、统计、查看等功能。经应用测试,该平台考勤便捷、时效、高效,较大程度杜绝了代签、伪签,同时解决了其他课堂考勤软件存在的购买硬件设备、操作系统兼容、占用手机空间、开发时间长、维护成本高等问题,具有一定的推广价值。 Aiming at the current problems of college classroom attendance, based on the WeChat platform and JavaEE, mobile devices are used as sign-in terminals to design a classroom scan code sign-in platform. The platform is based on the B/S model and adopts the SSM five-tier architecture to design the sign-in platform architecture, server-side and client-side software structure, data, and key problem solutions. The focus is on the design of business processes, classes and interfaces and functions of key modules such as client WeChat public platform docking, time-effective QR code generation, code scanning, random check, statistics, etc., to achieve real-time attendance, statistics, and viewing functions in college classrooms. After application testing, the platform is convenient, time-efficient, and efficient attendance, which largely eliminates agent signing and counterfeiting, and at the same time solves problems in other classroom attendance softwares that exist in pur-chasing hardware equipment, operating system compatibility, occupying mobile phone space, development time and long and high maintenance costs, which has certain promotion value.
机译:针对目前高校课堂考勤存在的问题,基于微信平台和JavaEE,采用移动设备作为签到终端,设计课堂扫码签到平台。该平台基于B/S模式,采用SSM五层架构,设计签到平台架构、服务器端和客户端软件结构、数据以及关键问题解决方案。重点研究客户端微信公众平台对接、时效二维码生成、扫码、随机抽查、统计等关键模块的业务流程、类与接口以及功能的设计,实现了高校课堂实时考勤、统计、查看等功能。经应用测试,该平台考勤便捷、时效、高效,较大程度杜绝了代签、伪签,同时解决了其他课堂考勤软件存在的购买硬件设备、操作系统兼容、占用手机空间、开发时间长、维护成本高等问题,具有一定的推广价值。 Aiming at the current problems of college classroom attendance, based on the WeChat platform and JavaEE, mobile devices are used as sign-in terminals to design a classroom scan code sign-in platform. The platform is based on the B/S model and adopts the SSM five-tier architecture to design the sign-in platform architecture, server-side and client-side software structure, data, and key problem solutions. The focus is on the design of business processes, classes and interfaces and functions of key modules such as client WeChat public platform docking, time-effective QR code generation, code scanning, random check, statistics, etc., to achieve real-time attendance, statistics, and viewing functions in college classrooms. After application testing, the platform is convenient, time-efficient, and efficient attendance, which largely eliminates agent signing and counterfeiting, and at the same time solves problems in other classroom attendance softwares that exist in pur-chasing hardware equipment, operating system compatibility, occupying mobile phone space, development time and long and high maintenance costs, which has certain promotion value.

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