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Wireless Sensor Networks (WSN) is different than the Cellular Networks as I mentioned earlier.
A WSN is composed of a large number of sensor nodes that communicate using a wireless medium (air).
The sensor nodes are deployed randomly in the envir
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针对煤矿井下巷道狭长,信号多径效应明显,接收信号强度(RSSI)测距算法受井下环境影响大,定位精度低的情况,提出了一种信标节点链式部署结构下的动态RSSI测距算法,该算法以信标节点间的距离和它们间测量到的RSSI值为参考,计算巷道内实际环境下的路径衰落指数,以提高RSSI测距算法对环境的适应性。-A dynamic RSSI location algorithm is proposed based on the beacon nodes chain deployment of tunnel Wi
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matlab 仿真程序可用于kalman滤波应用。- INTRODUCTION
This example simulates distributed control of a DC-servo. The example
contains four computer nodes, each represented by a TrueTime kernel
block. A time-driven sensor node samples the process periodical
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Example: Distributed Wireless Control System,可用于无线传感器网络中-This example shows distributed control of a DC-servo using
communication over a wireless network. The example also shows how to
simulate power consumption and how to use the battery block.
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Matlab based wireless sensor network code for hetrogeneous application in Airports. This is based on clustering of nodes.
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无线传感器网络的所有锚节点的能量分布的一个仿真,有详细的程序分析和解释。-Wireless sensor networks for all of the energy distribution of anchor nodes in a simulation, there is a detailed program analysis and interpretation.
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无线传感器网,PEGASIS算法组网程序。在1*1范围内的以node_number个节点,以PEGASIS算法成网。-Wireless sensor networks, PEGASIS algorithm networking program. 1* 1 to node_number within the nodes in order to PEGASIS algorithms into a network.
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通过单一的Wi-Fi接入点的信号强度来判断移动物体的位置。比较新的一篇文章。用了蒙特卡罗抽样的办法-Monte Carlo Sampling Method-来估计位置。-This paper describes research towards a system
for locating wireless nodes in a home environment requiring
merely a single access point. The only sensor reading
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leach code for 30 nodes
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无线传感器网络 CAB定位仿真程序
这是无线传感器节点定位CAB算法的仿真程序,由matlab完成-Wireless sensor network simulation program CAB positioning is CAB localization algorithm for wireless sensor nodes in the simulation program, completed by the matlab
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Estimating the positions of sensor nodes is a fundamental and
crucial problem in ad hoc wireless sensor networks (WSNs).
In this paper, an accurate node localization method for WSNs
is devised based on the weighted least squares technique with
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在matlab软件下实现传感器节点的拓扑设置以及DV_hop算法,得到未知节点的坐标-Matlab software in the topology of sensor nodes to achieve DV_hop algorithm settings and to get the coordinates of the unknown node
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Creates wireless sensor network nodes in matlab.
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传感器网络的关系,半径和程序中的节点数的连通概率和通信,利用MATLAB软件对部署图的计算机模拟-The relationship of sensor networks, the connectivity probability and communication radius and the number of nodes in the program, use the Matlab software on the computer simulation of deployment and m
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在无线传感网络中,求解路由算法最短路径,节省传感节点的能量-Energy in wireless sensor networks, routing algorithm for solving the shortest path, saving sensor nodes
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传感器节点在链状拓扑结构中的传输仿真,可控制跳距,跳数,节点间距离(The transmission simulation of sensor nodes in chain topology can control hop distance, hop count and distance between nodes)
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在圆内随机分布的传感器节点利用波束成形与卫星直接通信。(Distributed sensor nodes that is randomly distributed in the circle can create a direct communication with satellite using Beamforming.)
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算法程序,用于研究无线传感器网络中节点不同分布对定位精度的而影响(The algorithm is used to study the influence of different distribution of nodes in wireless sensor network on positioning accuracy.)
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改进DV-Hop定位算法
首先设置初始量,布置了一个范围为100×100m2的区域,其上随机分布100个传感器节点,其中有10个信标节点,节点的通信半径为30m。
第二步在正方形区域内产生均匀分布的随机拓扑,随机产生节点坐标并将其中十个选定为信标节点,其余九十个设为未知节点,然后画出节点分布图。
第三步通过最短路径法计算未知节点与每个信标节点的最小跳数。
第四步根据前面记录的其他信标节点的位置信息和相距跳数估算平均每跳的实际距离,用跳数估计距离的方法得出未知节点到信标节点的距离。
第五
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无线传感器网络中采用虚拟力算法进行节点部署时,节点优化过程的matlab算法,产生结果有直观的图形,并且可以根据不同需要进行参数更改。代码导入后可以直接运行(When virtual force algorithm is used to deploy nodes in wireless sensor networks, the matlab algorithm of node optimization process generates intuitive graphics and can ch
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