Dual-tuning IPT Systems for Low Bandwidth Communications

E.L. van Boheemen, J. Boys, G. Covic
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引用次数: 20

Abstract

This paper presents the design, implementation and performance of a low bandwidth physical communications channel for both new and existing inductive (contact-less) power transfer (IPT) applications, wherein power is transferred in the frequency range of 10 kHz to 50 kHz. The designed communications system operates at around 500 kHz without limiting power transfer, thereby maintaining the advantageous characteristics of IPT systems. The properties of the communications channel can be determined using the same magnetic coupling theory as applied for the power transfer. Its bandwidth is designed for control applications and is capable of up to 19.2 kbps. The channel was installed and evaluated on an existing electronic factory automation IPT system. Mathematical analysis of the channel resulted in a calculated path attenuation of 37 dB which compares favorably with practical measurements of typically 34 dB. When a real IPT power supply is present, harmonics of the power transfer frequency exist at the communications frequency and as such the communications channel utilizes a number of passive parallel and series tuned filters to maintain a signal to noise ratio of at least 10 dB.
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低带宽通信双调谐IPT系统
本文介绍了一种低带宽物理通信信道的设计、实现和性能,用于新的和现有的电感(无接触)功率传输(IPT)应用,其中功率在10 kHz至50 kHz的频率范围内传输。所设计的通信系统工作在500khz左右,不限制功率传输,从而保持IPT系统的优势特性。通信信道的性质可以用与功率传输相同的磁耦合理论来确定。其带宽专为控制应用而设计,最高可达19.2 kbps。该通道是在现有的电子工厂自动化IPT系统上安装和评估的。通道的数学分析得出37 dB的计算路径衰减,与典型的34 dB的实际测量值比较有利。当真正的IPT电源存在时,功率传输频率的谐波存在于通信频率,因此通信信道利用许多无源并联和串联调谐滤波器来保持至少10db的信噪比。
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