应用于无线传感器网络的无线太阳能监测仪的设计

R. Murugesh, Aravind Hanumanthaiah, Ullas Ramanadhan, Nirmala Vasudevan
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引用次数: 7

摘要

无线传感器网络(wsn)通常远程部署;因此,使用寿命有限的典型一次性化学电池可能不适合为网络供电。在这种情况下,利用太阳光发电的光伏(PV)系统可以作为更好的替代能源。阳光的强度随着时间的推移而变化,因此光伏系统中电池的充电速率也会变化。监测电池的充放电电流和电压使我们能够修改系统的操作,以提高其整体效率。此外,它使我们能够检测太阳能电池板,电池或网络节点的任何故障。我们设计了一个独立的、低成本的、超低功耗的基于微控制器的无线太阳能监测器,可以很容易地插入光伏系统。监控器测量面板、电池和负载之间的电流和电压,并定期通过独立的无线接口将这些值传输到控制中心进行观察和分析。我们对监视器进行了功率分析,了解了它在不同状态下的功耗。使用此电源监视器应延长PV系统的整体寿命,并最大限度地减少由PV系统供电的WSN节点的电源故障。本文介绍了电力监测仪的设计及分析结果。
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Designing a Wireless Solar Power Monitor for Wireless Sensor Network Applications
Wireless sensor networks (WSNs) are often deployed remotely; hence, typical disposable chemical batteries with limited lifetimes may not be suitable for powering the network. In such cases, photovoltaic (PV) systems that generate electricity from sunlight can serve as a better alternative energy source. The intensity of sunlight varies over time, and thus the rates at which the batteries in the PV system get charged also vary. Monitoring the charging and discharging currents and voltages of the batteries enables us to modify the operation of the system in order to improve its overall efficiency. Moreover, it enables us to detect any fault in the solar panel, battery, or network node. We have designed an independent, low cost, ultra-low power microcontroller-based wireless solar power monitor that can be plugged easily into a PV system. The monitor measures the currents and voltages across the panels, batteries, and the load, and periodically transmits these values through an independent wireless interface to a control center for observation and analysis. We have performed a power analysis of the monitor and learnt about the power consumption in its various states. The use of this power monitor should extend the overall life of the PV system and also minimize power failures in the WSN nodes powered by the PV system. This paper reports about the design of the power monitor as well as the results of our analyses.
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