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High low-level features modelling of nodes in WSNs using SystemC

机译:使用SystemC对WSN中的节点进行高级和低级特征建模

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Performing an adequate modeling of sensors in contemporary sensor networks can be difficult due to the need to include characteristics of high and low level of the entire network into a single software model. This paper presents a novel approach for modeling the nodes in a sensor network, as well as its integration into the network using a programmable parametric structure. The proposed approach was developed in SystemC language considering the properties of this language which perfectly fits the needs of both the hardware description of the nodes, as the complex algorithms that can run on them. The proposed model allows to include several physical node features such as data formats, connections between components and memory, and real limitations in runtime, among others. The developed model is applied to a geoelectrical prospection network in order to demonstrate in practice its advantages and application possibilities, and considering that in such kind of networks nodes act as sensors or actuator, depending on the operation mode in which it is working. Two classic network topologies, chain and bus, are used to test the model with a set of different parameter values. Performance metrics are used to compare the network topologies and their interaction with the node set size, in order to verify the validity of the proposed approach.
机译:由于需要在单个软件模型中包含整个网络的高低级特征,因此很难在现代传感器网络中对传感器进行适当的建模。本文提出了一种用于对传感器网络中的节点建模的新颖方法,以及使用可编程参数结构将其集成到网络中的方法。考虑到该语言的特性,该方法是用SystemC语言开发的,该特性完全可以满足节点的两种硬件描述的需求,因为可以在节点上运行复杂的算法。所提出的模型允许包括多个物理节点功能,例如数据格式,组件与内存之间的连接以及运行时的实际限制等。为了在实践中证明其优势和应用可能性,并考虑到在此类网络中节点根据其工作模式充当传感器或致动器,将所开发的模型应用于地电勘探网络。两种经典的网络拓扑(链和总线)用于通过一组不同的参数值来测试模型。性能指标用于比较网络拓扑及其与节点集大小的交互,以验证所提出方法的有效性。

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