English

FSK-based Simultaneous Wireless Information and Power Transfer in Inductively Coupled Resonant Circuits Exploiting Frequency Splitting

Signal Processing 2020-04-13 v3

Abstract

Inductively coupled resonant circuits are affected by the so-called frequency splitting phenomenon at short distances. In the area of power electronics, tracking of one of the peak frequencies is state-of-the-art. In the data transmission community, however, the frequency splitting effect is often ignored. Particularly, modulation schemes have not yet been adapted to the bifurcation phenomenon. We argue that binary frequency shift keying (2-ary FSK) is a low-cost modulation scheme which well matches the double-peak voltage transfer function H(s)H(s), particularly when the quality factor QQ is large, whereas most other modulation schemes suffer from the small bandwidths of the peaks. Additionally we show that a rectified version of 2-ary FSK, coined rectified FSK (RFSK), is even more attractive from output power and implementation points of view. Analytical and numerical contributions include the efficiency factor, the impulse response, and the bit error performance. A low-cost incoherent receiver is proposed. Theoretical examinations are supported by an experimental prototype.

Keywords

Cite

@article{arxiv.1901.11502,
  title  = {FSK-based Simultaneous Wireless Information and Power Transfer in Inductively Coupled Resonant Circuits Exploiting Frequency Splitting},
  author = {Peter A. Hoeher},
  journal= {arXiv preprint arXiv:1901.11502},
  year   = {2020}
}

Comments

This is the author's version of an article that has been published in IEEE Access, vol. 7, pp. 40183-40194, Mar. 2019. The final version is available in IEEExplore at https://ieeexplore.ieee.org/document/8673753

R2 v1 2026-06-23T07:28:32.772Z