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SENSORLESS METHOD FOR SWITCHING ENERGY HARVESTER BASED ON SELF-SENSING APPROACH

机译:基于自感知方法的无源切换能量采集方法

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Vibration energy harvesting extracts electrical energy from vibrating structures. The past studies of vibration energy harvesting suggest that the efficiency can be improved by switch regulation in the harvesting circuit. The switch-regulation is carried out depending on the motion of the target structure with the use of vibration sensors such as displacement sensor or accelerometer. This paper proposes a new vibration self-sensing method for switching energy harvesters that do not use those vibration sensors. In this method, the voltage of the piezoelectric transducer is measured, and the structural vibrational status is estimated from the measured voltage. The transducer voltage is not smooth and does not maintain the sinusoidal wave even when the structure vibrates in a sinusoidal wave because the switch energy harvesting method inverses the transducer voltage at every period. Thus, we establish a state observer based on a Kalman filter to estimate three state values of the target harvesting system: modal displacement, modal velocity, and electric charge in the transducer. This paper describes the construction processes for the observer. The observed value is the transducer voltage. We also show an electric circuit for measuring the transducer voltage. Finally, we confirm the efficiency of the proposed state observer for switch harvesting with numerical simulations.
机译:振动能量收集从振动结构中提取电能。过去对振动能量收集的研究表明,可以通过收集电路中的开关调节来提高效率。使用诸如位移传感器或加速度计之类的振动传感器,根据目标结构的运动来执行开关调节。本文提出了一种新的振动自感应方法,用于不使用那些振动传感器的能量采集器的切换。在这种方法中,测量压电换能器的电压,并根据测量的电压估算结构的振动状态。即使当结构以正弦波振动时,换能器电压也不平滑,也不保持正弦波,这是因为开关能量收集方法在每个周期都会使换能器电压反向。因此,我们基于卡尔曼滤波器建立状态观察器,以估计目标采集系统的三个状态值:模态位移,模态速度和换能器中的电荷。本文为观察者描述了构建过程。观测值是传感器电压。我们还显示了用于测量换能器电压的电路。最后,我们用数值模拟确定了提出的状态观测器用于开关收获的效率。

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