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A Standard-Based Internet of Things Platform and Data Flow Modeling for Smart Environmental Monitoring

机译:基于标准的东西互联网平台和智能环境监测数据流模型

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摘要

The environment consists of the interaction between the physical, biotic, and anthropic means. As this interaction is dynamic, environmental characteristics tend to change naturally over time, requiring continuous monitoring. In this scenario, the internet of things (IoT), together with traditional sensor networks, allows for the monitoring of various environmental aspects such as air, water, atmospheric, and soil conditions, and sending data to different users and remote applications. This paper proposes a Standard-based Internet of Things Platform and Data Flow Modeling for Smart Environmental Monitoring. The platform consists of an IoT network based on the IEEE 1451 standard which has the network capable application processor (NCAP) node (coordinator) and multiple wireless transducers interface module (WTIM) nodes. A WTIM node consists of one or more transducers, a data transfer interface and a processing unit. Thus, with the developed network, it is possible to collect environmental data at different points within a city landscape, to perform analysis of the communication distance between the WTIM nodes, and monitor the number of bytes transferred according to each network node. In addition, a dynamic model of data flow is proposed where the performance of the NCAP and WTIM nodes are described through state variables, relating directly to the information exchange dynamics between the communicating nodes in the mesh network. The modeling results showed stability in the network. Such stability means that the network has capacity of preserve its flow of information, for a long period of time, without loss frames or packets due to congestion.
机译:环境包括物理,生物和人类方式之间的相互作用。随着这种相互作用是动态的,环境特征随着时间的推移而自然地改变,需要连续监测。在这种情况下,与传统的传感器网络一起的东西(物联网)允许监控空气,水,大气和土壤条件等各种环境方面,以及向不同用户和远程应用发送数据。本文提出了一种基于标准的物联网平台和智能环境监测的数据流模型。该平台由基于IEEE 1451标准的IOT网络组成,该IEEE 1451标准具有网络能力的应用处理器(NCAP)节点(协调器)和多个无线传感器接口模块(WTIM)节点。 WTIM节点包括一个或多个换能器,数据传输接口和处理单元。因此,利用开发的网络,可以在城市景观内的不同点处收集环境数据,以对WTIM节点之间的通信距离进行分析,并监视根据每个网络节点传输的字节数。另外,提出了一种数据流的动态模型,其中通过状态变量描述了NCAP和WTIM节点的性能,直接与网状网络中的通信节点之间的信息交换动态相关联。建模结果表明网络中的稳定性。这种稳定性意味着网络具有长时间保持其信息流的能力,而不会因拥塞而没有损失帧或包。

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