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Internet of things using publish and subscribe method cloud-based application to NFT-based hydroponic system

机译:物联网使用基于发布和订阅方法的基于云的应用程序到基于NFT的水耕系统

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The integration Internet of Things (IoT) generally identical with Cloud computing. IoT aims to connect the heterogeneous objects/devices with each other, in order to communicate or exchange data/information. Development of the Cloud IoT system, have challenges to achieve these objectives, such as middleware, interoperability and scalability of system. In this paper, we will discuss the solution of the challenges, by applying the publish and subscriber method, using MQTT protocol. This paper, proposed of architecture model design, which is implemented in the form of system topology. This topology apply to monitor and control the provision of nutrition hydroponics, accessible as a Cloud SaaS. From the test results, average node response time needed to connect and communicate with IoT Cloud system (online) is 7.21 seconds. The time required to declare offline state of a node is 21.55 seconds. The test results of Cloud IoT (broker), obtained that number of nodes for each level QoS, affecting resource usage of CPU and throughput. The highest resource usage of CPU is 19% of 2.0GHz and throughput TX/RX is 34.68KBps/49.4KBps. This result obtained from 1000 nodes scheme testing with 1 messagesode, by using simulation application, on QoS level 2. The average of minimum bandwidth used is ± 0.90Kbps by 1 publisher, to send 1 message with 115 Bytes of payload size, on each 3 levels of QoS MQTT, and approximately ± 0.04Kbps on subscriber to receive that message.
机译:集成的物联网(IoT)通常与云计算相同。物联网旨在将异构对象/设备彼此连接,以进行通信或交换数据/信息。云物联网系统的开发面临着实现这些目标的挑战,例如中间件,系统的互操作性和可扩展性。在本文中,我们将通过使用MQTT协议应用发布和订阅者方法来讨论挑战的解决方案。本文提出了以系统拓扑形式实现的体系结构模型设计。此拓扑适用于监视和控制营养水培的提供,可通过Cloud SaaS进行访问。根据测试结果,与IoT Cloud系统(在线)连接和通信所需的平均节点响应时间为7.21秒。声明节点离线状态所需的时间为21.55秒。 Cloud IoT(经纪人)的测试结果获得了每个级别QoS的节点数量,从而影响了CPU资源使用率和吞吐量。 CPU的最高资源使用率是2.0GHz的19%,吞吐量TX / RX是34.68KBps / 49.4KBps。该结果是通过在QoS级别2上使用模拟应用程序从1000个节点的方案测试(每个节点有1条消息)获得的。平均而言,由1个发布者使用的最小带宽平均值为±0.90Kbps,以在1个消息上发送115字节有效负载大小的消息。每3个级别的QoS MQTT,并且在订户上大约±0.04Kbps,以接收该消息。

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