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Modulation Techniques for Biomedical Implanted Devices and Their Challenges

机译:生物医学植入设备的调制技术及其挑战

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Implanted medical devices are very important electronic devices because of their usefulness in monitoring and diagnosis, safety and comfort for patients. Since 1950s, remarkable efforts have been undertaken for the development of bio-medical implanted and wireless telemetry bio-devices. Issues such as design of suitable modulation methods, use of power and monitoring devices, transfer energy from external to internal parts with high efficiency and high data rates and low power consumption all play an important role in the development of implantable devices. This paper provides a comprehensive survey on various modulation and demodulation techniques such as amplitude shift keying (ASK), frequency shift keying (FSK) and phase shift keying (PSK) of the existing wireless implanted devices. The details of specifications, including carrier frequency, CMOS size, data rate, power consumption and supply, chip area and application of the various modulation schemes of the implanted devices are investigated and summarized in the tables along with the corresponding key references. Current challenges and problems of the typical modulation applications of these technologies are illustrated with a brief suggestions and discussion for the progress of implanted device research in the future. It is observed that the prime requisites for the good quality of the implanted devices and their reliability are the energy transformation, data rate, CMOS size, power consumption and operation frequency. This review will hopefully lead to increasing efforts towards the development of low powered, high efficient, high data rate and reliable implanted devices.
机译:植入的医疗设备是非常重要的电子设备,因为它们在监视和诊断,患者的安全性和舒适性方面很有用。自1950年代以来,为开发生物医学植入式和无线遥测生物设备做出了巨大的努力。设计合适的调制方法,使用电源和监视设备,以高效率,高数据速率和低功耗将能量从外部传递到内部部件等问题,在可植入设备的开发中均起着重要作用。本文对现有无线植入设备的各种调制和解调技术(例如幅度键控(ASK),频移键控(FSK)和相移键控(PSK))进行了全面的调查。在表格中调查并总结了规格的详细信息,包括载波频率,CMOS大小,数据速率,功耗和电源,芯片面积以及各种调制方案的应用以及相应的关键参考。通过对未来植入式设备研究的进展进行简短的建议和讨论,阐明了这些技术的典型调制应用的当前挑战和问题。可以看出,要获得高质量的植入设备及其可靠性,首要条件是能量转换,数据速率,CMOS尺寸,功耗和工作频率。这项审查有望导致为开发低功耗,高效,高数据速率和可靠的植入设备做出更大的努力。

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