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A power waveform design based on OVSF-PPM for stress wave based wireless power transfer

机译:基于OVSF-PPM基于应力波的无线电力传输的功率波形设计

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The lifetime of wireless sensors and devices is restricted by their limited battery capacities, since it is quite time-consuming and costly to replace batteries. Wireless power transfer is recognized as a feasible solution to charge wireless sensors and portable devices, since it can provide energy continuously for wireless electronic devices. This paper explores a waveform design for stress wave power transfer. In the proposed method, pulse position modulation (PPM) signals are firstly designed based on orthogonal variable spreading factor (OVSF) code. Then, power transfer waveforms for multiple receivers are created via analyzing the correlation among the PPM signals. When applied in stress wave power transfer, the proposed waveform is demonstrated to effectively improve power transfer performance at the intended receiver. We investigate three different transmission schemes, namely the pulse waveform, the time reversal waveform, and the proposed power transfer waveform, by comparing and analyzing their performances in experiments when one energy transmitter and one energy transfer array are respectively used. Due to multiple stress wave modes, rich dispersion and mutual interference among energy transfer signals, energy transfer efficiencies (ETE) and peak to average power ratios (PAPR) tend to be low by using pulse waveforms or traditional time reversal waveforms to transfer stress wave energy. On the contrary, by implementing the proposed waveform in stress wave power transfer, the ETE and the PAPR are effectively improved. In the experiment, three piezoce-ramic transducers mounted on a pipeline are used for stress wave power transfer. The experimental results demonstrate that the proposed waveform significantly improves the ETE and the PAPR, as compared with the other two waveforms.
机译:无线传感器和设备的寿命受到电池电量有限的限制,因为更换电池非常耗时且昂贵。无线电力传输被识别为充电的可行解决方案,以充电无线传感器和便携式设备,因为它可以为无线电子设备连续提供能量。本文探讨了用于应力波电力传输的波形设计。在所提出的方法中,首先基于正交可变扩展因子(OVSF)代码设计脉冲位置调制(PPM)信号。然后,通过分析PPM信号之间的相关性来创建用于多个接收器的功率传输波形。当应用于应力波动力传输时,所提出的波形被证明以有效地提高预期接收器的功率传递性能。通过在分别使用一个能量发射器和一个能量传递阵列时,通过比较和分析它们在实验中的性能中,研究了三种不同的传输方案,即脉冲波形,时间反转波形和所提出的功率传输波形。由于多重应力波模式,能量传递信号中的丰富分散和相互干扰,通过使用脉冲波形或传统的时间反转波形来转移应力波能量,能量转移效率(ete)和平均功率比(PAPR)往往是低的。相反,通过在应力波动力传递中实现所提出的波形,EETE和PAPR得到有效改善。在实验中,安装在管道上的三个压电式ramic换能器用于应力波动力传输。实验结果表明,与其他两个波形相比,所提出的波形显着改善了ette和papr。

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