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Automatic Frequency Controller for Power Amplifiers Used in Bio-Implanted Applications: Issues and Challenges

机译:生物植入应用中的功率放大器自动频率控制器:问题和挑战

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摘要

With the development of communication technologies, the use of wireless systems in biomedical implanted devices has become very useful. Bio-implantable devices are electronic devices which are used for treatment and monitoring brain implants, pacemakers, cochlear implants, retinal implants and so on. The inductive coupling link is used to transmit power and data between the primary and secondary sides of the biomedical implanted system, in which efficient power amplifier is very much needed to ensure the best data transmission rates and low power losses. However, the efficiency of the implanted devices depends on the circuit design, controller, load variation, changes of radio frequency coil's mutual displacement and coupling coefficients. This paper provides a comprehensive survey on various power amplifier classes and their characteristics, efficiency and controller techniques that have been used in bio-implants. The automatic frequency controller used in biomedical implants such as gate drive switching control, closed loop power control, voltage controlled oscillator, capacitor control and microcontroller frequency control have been explained. Most of these techniques keep the resonance frequency stable in transcutaneous power transfer between the external coil and the coil implanted inside the body. Detailed information including carrier frequency, power efficiency, coils displacement, power consumption, supplied voltage and CMOS chip for the controllers techniques are investigated and summarized in the provided tables. From the rigorous review, it is observed that the existing automatic frequency controller technologies are more or less can capable of performing well in the implant devices; however, the systems are still not up to the mark. Accordingly, current challenges and problems of the typical automatic frequency controller techniques for power amplifiers are illustrated, with a brief suggestions and discussion section concerning the progress of implanted device research in the future. This review will hopefully lead to increasing efforts towards the development of low powered, highly efficient, high data rate and reliable automatic frequency controllers for implanted devices.
机译:随着通信技术的发展,在生物医学植入设备中使用无线系统已经变得非常有用。生物可植入设备是用于治疗和监测脑植入物,起搏器,耳蜗植入物,视网膜植入物等的电子设备。感应耦合链路用于在生物医学植入系统的一次侧和二次侧之间传输功率和数据,其中非常需要高效的功率放大器来确保最佳的数据传输速率和低功耗。但是,植入设备的效率取决于电路设计,控制器,负载变化,射频线圈的相互位移和耦合系数的变化。本文对各种功率放大器及其特性,效率和已在生物植入物中使用的控制器技术进行了全面的调查。已经解释了用于生物医学植入物的自动频率控制器,例如栅极驱动开关控制,闭环功率控制,压控振荡器,电容器控制和微控制器频率控制。这些技术中的大多数在外部线圈和植入体内的线圈之间的经皮功率传递中保持谐振频率稳定。在所提供的表格中对控制器技术进行了详细研究,包括载波频率,功率效率,线圈位移,功耗,供电电压和CMOS芯片。从严格的审查中可以发现,现有的自动频率控制器技术或多或少能够在植入装置中发挥良好的性能;但是,系统仍达不到要求。因此,说明了功率放大器典型自动频率控制器技术的当前挑战和问题,并简要介绍了有关未来植入设备研究进展的建议和讨论部分。这项审查有望导致为开发用于植入设备的低功率,高效,高数据速率和可靠的自动频率控制器做出更多的努力。

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