基于RFID的市級電力公司物資管理系統(tǒng)設(shè)計與實現(xiàn)
[Abstract]:Material management system is an important measure to improve the operation efficiency and reduce the operating cost of the enterprise. It is also an important means to realize the strategic goal of the enterprise and enhance the competitiveness of the enterprise. In this paper, according to the actual work of the author, we design a power enterprise material management system based on RFID technology. The use of RFID technology can reduce the workload of the warehouse administrator to manage the material in and out of the warehouse. It makes inventory and search more time saving and simple, at the same time, it can ensure the accuracy of storage material information and improve the speed of material storage and storage. In the system, the traditional material management methods, such as bidding and purchasing, warehousing management, demand planning and purchasing management, are integrated into one system. The working groups share the data in the database through the network to reduce the working time of communicating with each other. In this way, all data transmission and information transmission are carried out in the system, without the problem of information asymmetry, and the work efficiency can be improved effectively. First of all, the paper analyzes the RFID technology, introduces the composition, classification, related communication protocols of the RFID system, analyzes the selection requirements of the RFID system in the power material management system, and analyzes the database design requirements of the material management system. The advantages and disadvantages of several databases of SQL SERVER,ORACLE,DB2 and MYSQL are compared and SQL SERVER is selected as the database of the system, and the advantages and disadvantages of B / S structure and C / S structure are analyzed, and the B / S structure pattern is selected by comprehensive analysis. Secondly, the demand of material management system of municipal power company is analyzed comprehensively. This paper analyzes the material classification needed for power system management, analyzes the material management according to the characteristics of power system material classification, and analyzes the characteristics of power system material management. Combined with the application of material management in electric power, this paper analyzes the functions needed by the current material management system, determines the flow of the material management system according to the flow direction of the material, and emphatically analyzes each component module and functional requirements of the system. Determine the design principles of the system and define the standard for the system design. Finally, the design and implementation of material management system are described. According to the architecture of MVC, the system is divided into three parts: presentation layer, business logic layer and data support layer. The business logic layer is divided into demand planning subsystem module, bidding management subsystem module, procurement management subsystem module, warehouse management subsystem module, logistics management subsystem module and system management module. This paper focuses on the design of warehouse management subsystem and tender management subsystem, which are the innovation points of this design. The warehouse management subsystem combines the application of RFID technology with the traditional management method based on cargo location, which not only satisfies the industry application of electric power enterprises, but also reduces the cost of storage management and saves management time. The tender management subsystem is the key development direction of material management at present. The network bidding method can save the bidding time and cost, at the same time, it can expand the bidding scope and purchase the goods with good quality and cheap price. Finally, the design and implementation of the database are analyzed, and the design principle of the database is clarified, including the design of the E-R diagram, the deployment of the hot backup of the database and the asynchronous synchronization of the data.
【學(xué)位授予單位】:大連理工大學(xué)
【學(xué)位級別】:碩士
【學(xué)位授予年份】:2015
【分類號】:TP311.52
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