首页> 外文会议>Software and cyberinfrastructure for astronomy conference >Zigbee networking technology and its Application in Lamost Optical fiber positioning control system
【24h】

Zigbee networking technology and its Application in Lamost Optical fiber positioning control system

机译:Zigbee组网技术及其在Lamost光纤定位控制系统中的应用

获取原文

摘要

4,000 fiber positioning units need to be positioned precisely in LAMOST(Large Sky Area Multi-object Optical Spectroscopic Telescope) optical fiber positioning & control system, and every fiber positioning unit needs two stepper motors for its driven, so 8,000 stepper motors need to be controlled in the entire system. Wireless communication mode is adopted to save the installing space on the back of the focal panel, and can save more than 95% external wires compared to the traditional cable control mode. This paper studies how to use the ZigBee technology to group these 8000 nodes, explores the pros and cons of star network and tree network in order to search the stars quickly and efficiently. ZigBee technology is a short distance, low-complexity, low power, low data rate, low-cost two-way wireless communication technology based on the IEEE 802.15.4 protocol. It based on standard Open Systems Interconnection (OSI): The 802.15.4 standard specifies the lower protocol layers—the physical layer (PHY), and the media access control (MAC). ZigBee Alliance defined on this basis, the rest layers such as the network layer and application layer, and is responsible for high-level applications, testing and marketing. The network layer used here, based on ad hoc network protocols, includes the following functions: construction and maintenance of the topological structure, nomenclature and associated businesses which involves addressing, routing and security and a self-organizing-self-maintenance functions which will minimize consumer spending and maintenance costs. In this paper, freescale's 802.15.4 protocol was used to configure the network layer. A star network and a tree network topology is realized, which can build network, maintenance network and create a routing function automatically. A concise tree network address allocate algorithm is present to assign the network ID automatically.
机译:需要在LAMOST(大天空区域多目标光谱望远镜)光纤定位和控制系统中精确定位4,000个光纤定位单元,并且每个光纤定位单元需要两个步进电机来驱动,因此需要控制8,000个步进电机在整个系统中。采用无线通讯方式,节省了面板背面的安装空间,与传统的电缆控制方式相比,可以节省95%以上的外部电线。本文研究了如何使用ZigBee技术对这8000个节点进行分组,探讨了星形网络和树形网络的优缺点,以便快速,高效地搜索星形。 ZigBee技术是一种基于IEEE 802.15.4协议的短距离,低复杂度,低功耗,低数据速率,低成本的双向无线通信技术。它基于标准的开放系统互连(OSI):802.15.4标准指定了较低的协议层-物理层(PHY)和媒体访问控制(MAC)。 ZigBee联盟在此基础上定义了其余层,如网络层和应用程序层,并负责高层应用程序,测试和市场营销。基于临时网络协议,此处使用的网络层包括以下功能:拓扑结构,术语和相关业务的构建和维护,其中涉及寻址,路由和安全性,以及自组织自维护功能,这些功能将最大程度地减少消费者支出和维护成本。在本文中,飞思卡尔的802.15.4协议用于配置网络层。实现了星形网络和树形网络的拓扑结构,可以自动构建网络,维护网络并创建路由功能。提供了一种简洁的树型网络地址分配算法来自动分配网络ID。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号