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Adaptive power management of energy autonomous structural health monitoring systems for wind turbines

机译:用于风力涡轮机能量自主结构健康监测系统的自适应电力管理

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Structural health monitoring systems of wind turbines with autonomous energy harvesting can extend lifetime, avoid blade corruption and improve energy efficiency. Their sensor measurement unit and wireless transmission are supplied from an energy harvester which transforms mechanical rotation into electrical energy. The wide dynamic range of the rotational speed of the rotor and the blade pitch angle result into a variable power demand of the sensor and transceiver, which must be adapted to the power generation. The electrical energy is generated twice in a complete rotation and has a pulse shaped waveform. It is stored in a capacitor followed by a DC/DC converter. An on board measurement system observes the charge status and can predict the remaining operation time. The wireless sensor node is reconfigured to prevent an approaching energy shortage in case of a shrinking energy budget. This paper introduces an adaptive power management by means of low latency wireless reconfiguration. It enables high flexibility under all operating conditions of a variable speed wind turbine.
机译:具有自主能量收集的风力涡轮机的结构健康监测系统可以延长寿命,避免叶片腐败并提高能效。它们的传感器测量单元和无线传输由能量收割机提供,使机械旋转变换成电能。转子的旋转速度的宽动态范围和叶片桨距角导致传感器和收发器的可变功率需求,这必须适应发电。在完全旋转中产生两次电能,并且具有脉冲形波形。它存储在电容器中,然后是DC / DC转换器。载板测量系统观察充电状态,可以预测剩余的操作时间。无线传感器节点被重新配置,以防止在收缩能量预算的情况下接近能量短缺。本文通过低延迟无线重新配置介绍了自适应电源管理。它在可变速度风力涡轮机的所有操作条件下实现了高柔韧性。

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