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1、河北工業(yè)大學碩士學位論文基于IEEE802.15.4的工業(yè)無線網(wǎng)絡結構設計與實時性分析姓名:李靖博申請學位級別:碩士專業(yè):控制科學與工程指導教師:孫鶴旭2010-12基于 IEEE802.15.4 的工業(yè)無線網(wǎng)絡結構設計與實時性分析 ii Structural Design and Real-time Analysis of Industrial Wireless Network Ba

2、sed on IEEE802.15.4 ABSTRACT With the modern and efficient development of industry, various industrial control systems have been used widely in metallurgical, power, petrochemical and other fields. The development of in

3、dustrial control system also promote the development of the industrial network. The wireless sensor technology and industrial technology can combine together to form industrial wireless network control system.Applied t

4、o the industrial enterprise fields to achieve remote monitoring in the whole process of production and obtain important industrial process data, that will become an inevitable trend. In industrial wireless network con

5、trol system, the system of real-time response plays a crucial role and directly related to the enterprise production safety. Industrial wireless networks are typically based on wireless sensor networks, IEEE 802.15.4 is

6、 one kind of protocol that is suitable for wireless sensor network communication. GTS mechanism in MAC layer can provide good real-time protection for wireless sensor networks. This paper mainly focuses on the IEEE 80

7、2.15.4 MAC layer for the study of real-time access capabilities, proposed an accurate OPNET simulation model for studying the data throughput of the allocated GTS, and then analyzed in different super frame series, ho

8、w the arrival data rate and the buffer capacity impacted on the GTS throughput and delay. The result shows that, for low arrival data rates and low buffer capacities of wireless sensor networks, selecting the appropria

9、te value of SO (SO=2 or 3), with GTS allocation mechanism is more suitable for enhancing network utilization and real-time response for system. In order to achieve the combination of theoretical research and practical

10、application based on the simulation analysis. Through constructing a network platform to simulate the actual industrial environment, using wireless sensor nodes for peer-to-peer communication. Designing 32-bit ARM micr

11、ocontroller STM32 as the core, combined with peripheral sensor and 2.4GHz wireless transceiver module CC2430 as the wireless industrial network node. STM32 control sensors to collect environmental parameters, the wire

12、less transceiver chip CC2430 will sent data to adjacent nodes, data eventually send to computer terminal through multi-level forwarding mode. Observing the results of data transmission can achieve the monitoring of in

13、dustrial network environment. Design of sensor node ensure real-time data transmission, Established by the wireless sensor network can also meet the real-time demand of industrial wireless network. It can be test in in

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