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Autonomous Energy Management System Achieving Piezoelectric Energy Harvesting in Wireless Sensors

机译:在无线传感器中实现压电能量收集的自主能量管理系统

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Wireless Sensor Networks (WSNs) are extensively used in monitoring applications such as humidity and temperature sensing in smart buildings, industrial automation, and predicting crop health. Sensor nodes are deployed in remote places to sense the data information from the environment and to transmit the sensing data to the Base Station (BS). When a sensor is drained of energy, it can no longer achieve its role without a substituted source of energy. However, limited energy in a sensor's battery prevents the long-term process in such applications. In addition, replacing the sensors' batteries and redeploying the sensors is very expensive in terms of time and budget. To overcome the energy limitation without changing the size of sensors, researchers have proposed the use of energy harvesting to reload the rechargeable battery by power. Therefore, efficient power management is required to increase the benefits of having additional environmental energy. This paper presents a new self-management of energy based on Proportional Integral Derivative controller (PID) to tune the energy harvesting and Microprocessor Controller Unit (MCU) to control the sensor modes.
机译:无线传感器网络(WSN)广泛用于监视应用程序,例如智能建筑中的湿度和温度感应,工业自动化以及预测作物健康。传感器节点部署在偏远位置,以感测来自环境的数据信息并将感测数据传输到基站(BS)。当传感器耗尽能量时,如果没有替代能源,它将无法再发挥作用。但是,传感器电池中有限的能量会阻止此类应用中的长期过程。另外,就时间和预算而言,更换传感器的电池并重新部署传感器非常昂贵。为了在不改变传感器尺寸的情况下克服能量限制,研究人员提出了利用能量收集来通过电源重新加载可充电电池的方法。因此,需要有效的电源管理以增加拥有更多环境能源的好处。本文提出了一种基于比例积分微分控制器(PID)来调节能量收集和基于微处理器的控制器单元(MCU)来控制传感器模式的新的能量自我管理。

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