首页> 外文期刊>Latin America Transactions, IEEE (Revista IEEE America Latina) >Design and implementation of a low-cost prototype system for continuous monitoring of electric fields generated by mobile base stations in the 850 MHz and 1900 MHz frequency bands
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Design and implementation of a low-cost prototype system for continuous monitoring of electric fields generated by mobile base stations in the 850 MHz and 1900 MHz frequency bands

机译:低成本原型系统的设计和实现,用于连续监测850 MHz和1900 MHz频段中移动基站产生的电场

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This paper describes the development of a scalable, autonomous and inexpensive monitoring system of electric fields generated by mobile phone base stations in the 850 MHz and 1900 MHz frequency bands, in Peru. The developed system is scalable because it consists of a ZigBee wireless network with electric field strength sensor and repeater nodes in a mesh topology with a dynamic routing mechanism. Sensor and repeater nodes are autonomous because they get their power from a small photovoltaic system. All electronic circuits were developed using low-cost technology. To manage the system elements and to store the information captured by the sensors, a web platform was developed. Tests in laboratory and field were performed to assess the accuracy of the sensor node. For this, a calibrated isotropic Narda SRM 3000 electric field meter was used. The results were very satisfactory for 1900 MHz frequency band but not for 850 MHz; some recommendations are given to improve the accuracy in the latter case. The performance of the sensor node's photovoltaic system was also assessed through the monitoring of the continuity of the system operation over time. It was verified that the sensor node was kept operating continuously without failures during a three-month test.
机译:本文介绍了秘鲁在850 MHz和1900 MHz频段上由移动电话基站产生的电场的可扩展,自治且廉价的监视系统的开发。开发的系统具有可扩展性,因为它由带有电场强度传感器的ZigBee无线网络和具有动态路由机制的网状拓扑中的中继器节点组成。传感器和中继器节点是自治的,因为它们是从小型光伏系统获取能量的。所有电子电路都是使用低成本技术开发的。为了管理系统元素并存储传感器捕获的信息,开发了一个Web平台。在实验室和现场进行了测试,以评估传感器节点的准确性。为此,使用了校准的各向同性Narda SRM 3000电场仪。结果对于1900 MHz频段非常令人满意,但对于850 MHz则不令人满意。提出了一些建议以提高后一种情况的准确性。传感器节点的光伏系统的性能还通过监视系统运行随时间的连续性进行了评估。经过验证,在三个月的测试中,传感器节点保持连续运行而没有故障。

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