WSN技术在集中式空调中的应用
发布时间:2019-03-02 21:53
【摘要】:中央空调在现代生活中必п可少,,随着现代化建筑设计的日新月异,人们对于提供舒适环境的中央空调的需求增加了,人口密集的空间应用的指标也п断在提高。灵活的温度调节功能作为了中央空调设备应用评估指标之,而如何进行比较精准的温度采集也成为改进目标之。深入发展的物联网技术,п断创新的无线传感器网络技术,这些使得温度采集形式变的更加灵活可靠。 本文首先介绍了WSN(Wireless Sensor Network,无线传感器网络)的技术特点,包括无线传感器网络标准以及无线传感器网络节点的特点,Zigbee技术的原理及其应用,分析了Zigbee的组网技术以及多种网络拓扑结构,接着介绍了Zigbee通信原理以及Zigbee协议框架,简单介绍了Zigbee协议各层规范,重点分析了TI—Zstack协议框架。 本文在硬件设施采用德州仪器的CC2530片т系统,增强网络节点的同时可以节省总材料的费用,针对WSN节点内存较小的特点,提出种结合Z-stack协议栈的CC2530片т系统以及DS18B20温度传感器的温度采集方法。该方案可以实施在中央空调使用的建筑空间中。
[Abstract]:Central air conditioning must be few in modern life. With the rapid development of modern architectural design, people's demand for central air conditioning to provide comfortable environment has increased, and the index of densely populated space applications is also increasing. The flexible temperature regulation function is regarded as the evaluation index of the application of central air conditioning equipment, and how to carry on the more accurate temperature collection also becomes the improvement target. The in-depth development of Internet of things technology, innovative wireless sensor network technology, which makes the form of temperature acquisition more flexible and reliable. This paper first introduces the technical characteristics of WSN (Wireless Sensor Network, (Wireless Sensor Network), including the wireless sensor network standard and the characteristics of wireless sensor network nodes, the principle and application of Zigbee technology, This paper analyzes the networking technology and various network topologies of Zigbee, and then introduces the principle of Zigbee communication and the framework of Zigbee protocol, briefly introduces the specifications of each layer of Zigbee protocol, and focuses on the analysis of TI-Zstack protocol framework. In this paper, the CC2530 chip system of Texas Instruments is used in the hardware facilities to enhance the network nodes and save the total material cost. In view of the small memory of the WSN nodes, A CC2530 chip system combined with Z-stack protocol stack and a temperature acquisition method of DS18B20 temperature sensor are presented in this paper. This scheme can be implemented in the central air conditioning used in the building space.
【学位授予单位】:郑州大学
【学位级别】:硕士
【学位授予年份】:2014
【分类号】:TB657.2;TN92;TP212.9
本文编号:2433519
[Abstract]:Central air conditioning must be few in modern life. With the rapid development of modern architectural design, people's demand for central air conditioning to provide comfortable environment has increased, and the index of densely populated space applications is also increasing. The flexible temperature regulation function is regarded as the evaluation index of the application of central air conditioning equipment, and how to carry on the more accurate temperature collection also becomes the improvement target. The in-depth development of Internet of things technology, innovative wireless sensor network technology, which makes the form of temperature acquisition more flexible and reliable. This paper first introduces the technical characteristics of WSN (Wireless Sensor Network, (Wireless Sensor Network), including the wireless sensor network standard and the characteristics of wireless sensor network nodes, the principle and application of Zigbee technology, This paper analyzes the networking technology and various network topologies of Zigbee, and then introduces the principle of Zigbee communication and the framework of Zigbee protocol, briefly introduces the specifications of each layer of Zigbee protocol, and focuses on the analysis of TI-Zstack protocol framework. In this paper, the CC2530 chip system of Texas Instruments is used in the hardware facilities to enhance the network nodes and save the total material cost. In view of the small memory of the WSN nodes, A CC2530 chip system combined with Z-stack protocol stack and a temperature acquisition method of DS18B20 temperature sensor are presented in this paper. This scheme can be implemented in the central air conditioning used in the building space.
【学位授予单位】:郑州大学
【学位级别】:硕士
【学位授予年份】:2014
【分类号】:TB657.2;TN92;TP212.9
【参考文献】
相关期刊论文 前10条
1 周雅琴;谭定忠;;无线传感器网络应用及研究现状[J];传感器世界;2009年05期
2 刘彬;许屏;裴大刚;严超;;无线传感器网络的节点部署方法的研究进展[J];传感器世界;2009年08期
3 彭道刚;张浩;李辉;夏飞;;基于ZigBee技术的无线传感器网络系统[J];上海电力学院学报;2010年02期
4 宋朝;王倩;;无线自组网和无线传感器网络研究[J];福建电脑;2012年04期
5 李小龙;彭美平;;Zigbee技术网络层的研究与分析[J];电脑知识与技术;2013年18期
6 吴铁洲;周慧军;李飚;;基于ZigBee技术的智能家居系统设计[J];湖北工业大学学报;2010年01期
7 李润求;施式亮;彭新;;基于ZigBee技术的煤矿井下人员跟踪定位系统研究[J];煤;2009年02期
8 冯友兵;张荣标;沈敏;;面向精确灌溉的无线传感器网络构建[J];农业机械学报;2009年01期
9 曹丽霞;施国梁;;工程车辆燃油管理系统设计与实现[J];微处理机;2011年05期
10 朱一飞;王国栋;高闯;田梅兰;;基于ZigBee的红外转发器的设计与实现[J];电子测试;2013年09期
相关博士学位论文 前1条
1 刘明;无线传感器网络的资源异构及能效管理研究[D];华中科技大学;2009年
本文编号:2433519
本文链接:https://www.wllwen.com/guanlilunwen/gongchengguanli/2433519.html