传感网

  • 网络sensor network;wsn
传感网传感网
  1. 通过WEB远程登陆到ARM网关服务器,实现对无线传感网的监控。

    WEB login to the ARM service gateway to remote control WSN .

  2. 根据定位过程中是否测量实际节点间的距离,传感网中的定位算法通常分为基于距离的(range-based)定位算法和距离无关的(range-free)定位算法。

    According to whether the actual measurement of the distance between the nodes in the WSN is required , The positioning algorithms are mainly divided into two sorts , one is based on the measured distance ( range-based ), and the other do not ( range-free ) .

  3. 基于传感网的无线监护系统中MAC层协议的研究

    Research of Wireless Sensor Network 's MAC Protocol in Wireless Monitoring System

  4. 基于RFID无线传感网的智能家庭安防巡逻定位系统的设计

    Design of Smart Home Safe-Guard System Based on RFID and Wireless Sensor Networks

  5. 传感网(SensorWeb)是分布式网络环境下传感器的协同观测、信息融合和在线服务的新方法。

    Sensor Web is a new method for collaborative observation , information fusion , and online service of sensors in a distributed network environment .

  6. 无线传感网多信道的MAC层协议

    MAC Protocols of Multi-Channel Based on Wireless Sensor Networks

  7. 基于虚拟MIMO技术的无线传感网协议设计

    Virtual MIMO-based Protocol Design for Wireless Sensor Networks

  8. 在多sink节点无线传感网的应用环境下,网络使用寿命更长,性能更好。

    In the multiple sink WSNs surroundings , the network lifetime become longer , the network performance better .

  9. 物联网(TheInternetofthings)技术是一门集传感网、射频识别(RFID)、传统互联网于一身的新兴技术。

    The Internet of Things ( IOT ) is an emerging technology , which contains sensor network , radio frequency identification ( RFID ) and traditional Internet .

  10. 反求工程中基于Delaunay三角形的模型重构研究传感网中的动态Delauanay三角剖分算法

    Delaunay Triangulation Algorithm Research in Reverse Engineering Dynamic Delaunay Triangulation for Wireless Sensor Networks

  11. 移动传感网中一种基于RSSI的机会主义路由设计

    An Opportunistic Routing for Mobile Wireless Sensor Networks Based on RSSI

  12. 研究静态无线传感网生存时间的最优方案,提出基于牛顿法的最大化生存时间分布式算法(LMDANM)。

    The scheme of optimal lifetime in static wireless sensor networks is researched and lifetime maximization distributed algorithm based on Newton method ( LMDA_NM ) is proposed .

  13. 本文提出一种构造无线传感网中Delaunay三角剖分的局部算法。

    In this paper we propose a localized algorithm to build the Delaunay triangulation in wireless sensor networks .

  14. 并且阐述了无线传感网与其他常见ad-hoc网络的主要区别。

    The main difference in wireless sensor network along with other conventional and ad-hoc networks has been presented .

  15. 另外,针对无线传感网中不可靠结点,提出了基于风险增长的结点重要性评估算法&WNI(WirelessNodeImportance)。

    Otherwise , based on the risk increment , the WNI ( Wireless Node Importance ) is presented to evaluate the node importance of WSN . ( 4 ) The reliability analysis based on network measurement .

  16. 基于OMAP的无线多媒体传感网图像节点设计

    Design of Camera Sensor Node Based on OMAP for WMSNs

  17. 一种基于测距的无线传感网sybil攻击检测方法

    Method of detecting the sybil attack based on ranging in wireless sensor network

  18. 针对非均匀分布的无线传感网,采用k-means算法确定网络的簇个数和相应每个簇的节点。

    For non-uniformly distributed wireless sensor networks , k-means algorithm is used to determine number of clusters and the corresponding network nodes in each cluster .

  19. 该算法将Sink节点的移动认为是离散运动,其优化问题可分解成若干个Sink节点静止的无线传感网最大化生存时间问题。

    The algorithm considers the mobility of sink node as discrete movement . Then the optimization problem is divided into lifetime maximization problems of several networks when sink node is static .

  20. 用OBDD算法评估无线传感网的可靠度和结点重要性

    Evaluate the reliability and node importance of wireless sensor networks with OBDD algorithm

  21. 针对均匀分布的无线传感网,Sink节点保存整个网络拓扑结构的信息,利用近邻算法评估节点密度,确定较优通信距离。

    For uniformly distributed wireless sensor networks , sink node saves the entire network topology information , uses various nearest-neighbor distances algorithm to measure node density , and determines preferable communication distance .

  22. 近年来伴随着微电子机械系统技术的发展潜力,无线传感网(WSN)技术受到极大的关注。

    The attractiveness of Wireless Sensor Networks ( WSN ) has been augmented immensely in recent time due to potential growth in Micro Electro Mechanical Systems ( MEMS ) technology .

  23. 无线传感网分布式多跳分层路由协议MSRP的研究与设计

    Research and Design of Distributed Multi-hop Hierarchical Routing Protocol MSRP in WSN

  24. 采用LMDANM算法求解静态无线传感网最大化生存时间问题,最终获得Sink节点移动多次的网络最大生存时间最优值。

    Each lifetime maximization problem of static wireless sensor network is solved by LMDA_NM algorithm and finally the optimal value of network maximum lifetime is obtained when sink node moves several times . 4 .

  25. 通过使用IMS对无线传感器网络业务进行发布,借助IMS大范围运营与规范化部署的特点,既可以实现传感网数据以标准的形式进行发布。

    By deploying the WSN business in IMS , with the characteristic of large scale operation and standard deployment , WSNs can publish data in a standard way .

  26. 无线传感网(wirelessSensorNetworks)具有分布式、自组织、多跳路由、动态拓扑、近距离、低功耗、低成本的特性,可以解决电力通信末端一公里的问题。

    With the properties of distributed , self-organizing , multi-hop routing , dynamic topology , close range , low-power , low-cost and so on , Wireless Sensor Networks ( WSN ) can solve the problem of the last one kilometer of power communication terminal .

  27. 采用本文提出的ANT传感网解决方案,并结合各式传感器,就能实际应用于如人员监测,门禁系统,智能家居和街道管理等项目中。

    Using this ANT sensor network solution , combined with various types of sensors , it will actually be applied to many projects such as the officer monitoring , access control systems , intelligent home and neighborhood management .

  28. 随着近年来无线通信、计算机及传感器技术的飞速发展和融合,无线传感网(WirelessSensorNetwork,WSN)技术应运而生,并开始广泛应用于工农业生产和日常生活的众多领域。

    In recent years , with the rapid development and integration of wireless communication technology , computer technology and sensor technology , the wireless sensor network ( WSN ) technology has come into being , obtaining numerous applications in industry , agriculture , everyday life and many other areas .

  29. 快速有效地获得单个或级联FBG器件的光谱特性,是优化设计基于FBG型光纤激光器、滤波器、放大器等各种光纤器件以及复杂分布式光传感网的重要基础和保障。

    Fast and efficient access to spectra performances of single or cascaded fiber gratings is the fundation to ensure optimizing the design of fiber laser , filter , amplifier , other fiber optic devices and complex distributed sensing network .

  30. 论文重点对无线传感网定位技术中的非测距定位DV-hop算法进行了深入研究,详细分析了其存在误差的原因。

    The paper focused on the Range-free positioning algorithm of wireless sensor networks DV-hop in-depth study , and analyzed the reasons for the existence of error in detail .