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Solar Energy Monitoring System Design Using Radio Frequency for Remote Areas

机译:利用射频监测系统设计利用遥控频率

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Solar power plant(SPP) installation which is located in remote areas, provides some benefits for the community, not only an economic aspect but also social, and cultural improvements. Moreover, the SPP is used to exist an electrical load, which is combined with conventional power plants through some networks, or it is operated standalone in remote areas. This operation requires great efforts for controlling and monitoring because of a faraway location. In these studies, a remote monitoring system (RMS) is proposed and developed for monitoring performances of the photovoltaic power plant without visiting the location. The RMS sends data using a radio frequency and displays in voltage, current and power values. Test results show that a portable designing of RMS can be used to measure the SPP and it provides convenient monitoring for the operating condition and technical performance. This portable device is composed of a microcontroller, monitoring display, data sender and receiver, and battery. In addition, several tests show that the sunlight intensity measurement has an error compared with the measuring reference. Data testing is performed at fixed distances between the amount meters and time response also depends on the transmitting distance.
机译:位于偏远地区的太阳能电厂(SPP)安装为社区提供了一些优势,不仅是经济方面,而且为社会方面提供了一些好处,也为社会方面和文化改进提供了一些好处。此外,SPP用于存在电负载,其通过某些网络与传统发电厂组合,或者它在偏远地区的独立操作。由于遥远的位置,这种操作需要努力控制和监控。在这些研究中,提出了一种远程监控系统(RMS),并开发用于监控光伏电厂的性能而不访问该位置。 RMS使用射频发送数据,并在电压,电流和功率值中显示。测试结果表明,RMS的便携式设计可用于测量SPP,并为操作条件和技术性能提供方便的监控。该便携式设备由微控制器,监控显示,数据发件人和接收器和电池组成。此外,几个测试表明,与测量参考相比,阳光强度测量有误差。数据测试在数量计和时间响应之间的固定距离下执行,也取决于发送距离。

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