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Using IoT and smart monitoring devices to optimize the efficiency of large-scale distributed solar farms

机译:使用IoT和智能监控设备优化大型分布式太阳能电池效率的效率

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This paper presents a novel IoT-based architecture that utilizes IoT hardware, software, and communication technologies to enable real-time monitoring and management of solar photovoltaic systems at large scales. The system enables stakeholders to remotely control and monitor the photovoltaic systems and evaluate the effect of various environmental factors such as weather, air quality, and soiling. The system was implemented and evaluated in terms of network delay and resource consumption. Message Queueing Telemetry Transport (MQTT) was used to facilitate wide-scale real-time communication. The average network delay was found to be less than 1 s, proving the architecture to be ideal for solar and smart grid monitoring systems. As for resource consumption, the evaluation showed the hardware to consume about 3% of the panel's output, while the application also utilized a very small percentage of the CPU. This led to the conclusion that the proposed architecture is best deployed using low-cost constrained edge devices where a combination of IoT-based paradigm, efficient MQTT communication, and low resources consumption makes the system cost-effective and scalable.
机译:本文介绍了一种新的基于IOT的架构,它利用物联网硬件,软件和通信技术,以便在大尺度上进行实时监控和管理太阳能光伏系统。该系统使利益相关者能够远程控制和监控光伏系统,并评估各种环境因素(如天气,空气质量和污染)的效果。在网络延迟和资源消耗方面实现和评估系统。消息排队遥测传输(MQTT)用于促进广泛的实时通信。发现平均网络延迟小于1秒,证明了架构是太阳能和智能电网监控系统的理想选择。对于资源消耗,评估显示硬件消耗面板输出的3%,而应用程序也使用了非常小的CPU百分比。这导致了所提出的架构最好地部署使用低成本受限的边缘设备部署,其中基于IOT的范例,高效的MQTT通信和低资源消耗的组合使得系统具有成本效益和可扩展。

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