AIP Advances (May 2018)

Optimization design of wireless charging system for autonomous robots based on magnetic resonance coupling

  • Junhua Wang,
  • Meilin Hu,
  • Changsong Cai,
  • Zhongzheng Lin,
  • Liang Li,
  • Zhijian Fang

DOI
https://doi.org/10.1063/1.5030445
Journal volume & issue
Vol. 8, no. 5
pp. 055004 – 055004-17

Abstract

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Wireless charging is the key technology to realize real autonomy of mobile robots. As the core part of wireless power transfer system, coupling mechanism including coupling coils and compensation topology is analyzed and optimized through simulations, to achieve stable and practical wireless charging suitable for ordinary robots. Multi-layer coil structure, especially double-layer coil is explored and selected to greatly enhance coupling performance, while shape of ferrite shielding goes through distributed optimization to guarantee coil fault tolerance and cost effectiveness. On the basis of optimized coils, primary compensation topology is analyzed to adopt composite LCL compensation, to stabilize operations of the primary side under variations of mutual inductance. Experimental results show the optimized system does make sense for wireless charging application for robots based on magnetic resonance coupling, to realize long-term autonomy of robots.