Kim Jong-Hun, Hassan Najam Ul, Lee Seung-Ju, Jung Yeon-Woo, Shin Se-Un
Department of Electrical Engineering, Ulsan National Institute of Science and Technology (UNIST), Ulsan, 44919 South Korea.
Biomed Eng Lett. 2022 May 17;12(3):229-238. doi: 10.1007/s13534-022-00231-1. eCollection 2022 Aug.
Implantable Medical Devices (IMDs) have been developing in ways to be lighter and lower-power systems. In the view of such developments, the battery recharging capacity to ensure the stable operation of the system is essential. Wireless power transfer (WPT) was proposed as a solution to recharge the battery without complex metallic contacts. However, due to limitations such as threshold voltage of power switches and minimal input power of the multi-stage structure (Rectifier + Regulator/DC-DC converter) of conventional voltage-mode (VM) WPT, there are drawbacks of an input power range above a certain threshold level and limitations due to strict regulations on the human body. These issues make the design of the IMD battery charger much harder and prevent IMDs from being a more viable option for people-in-need. This paper introduces distinguishing characteristics of resonant current-mode (RCM) WPT technology to overcome the aforementioned issues. It also describes the basic theory, conventional circuits of VM/RCM, comparisons, and major challenges of RCM. Finally, advanced and efficiency-enhancing techniques of the-state-of-art works among the RCM topologies will be discussed to follow up the trend of RCM WPT.
可植入式医疗设备(IMD)一直在朝着更轻、更低功耗的系统方向发展。鉴于此类发展,确保系统稳定运行的电池充电能力至关重要。无线电力传输(WPT)被提出作为一种无需复杂金属触点即可为电池充电的解决方案。然而,由于诸如功率开关的阈值电压以及传统电压模式(VM)WPT的多级结构(整流器+调节器/DC-DC转换器)的最小输入功率等限制,存在输入功率范围高于特定阈值水平的缺点以及由于对人体的严格规定而产生的限制。这些问题使得IMD电池充电器的设计更加困难,并阻碍了IMD成为有需要的人的更可行选择。本文介绍了谐振电流模式(RCM)WPT技术的显著特点,以克服上述问题。还描述了基本理论、VM/RCM的传统电路、比较以及RCM的主要挑战。最后,将讨论RCM拓扑中最先进作品的先进和提高效率的技术以跟上RCM WPT的趋势。