Abouei Jamshid, Brown J David, Plataniotis Konstantinos N Kostas, Pasupathy Subbarayan
Department of Electrical and Computer Engineering, Yazd University, Yazd 89195-741, Iran.
IEEE Trans Inf Technol Biomed. 2011 May;15(3):456-66. doi: 10.1109/TITB.2011.2105497. Epub 2011 Jan 13.
The use of wireless implant technology requires correct delivery of the vital physiological signs of the patient along with the energy management in power-constrained devices. Toward these goals, we present an augmentation protocol for the physical layer of the medical implant communications service (MICS) with focus on the energy efficiency of deployed devices over the MICS frequency band. The present protocol uses the rateless code with the frequency-shift keying (FSK) modulation scheme to overcome the reliability and power cost concerns in tiny implantable sensors due to the considerable attenuation of propagated signals across the human body. In addition, the protocol allows a fast start-up time for the transceiver circuitry. The main advantage of using rateless codes is to provide an inherent adaptive duty cycling for power management, due to the flexibility of the rateless code rate. Analytical results demonstrate that an 80% energy saving is achievable with the proposed protocol when compared to the IEEE 802.15.4 physical layer standard with the same structure used for wireless sensor networks. Numerical results show that the optimized rateless coded FSK is more energy efficient than that of the uncoded FSK scheme for deep tissue (e.g., digestive endoscopy) applications, where the optimization is performed over modulation and coding parameters.
无线植入技术的应用需要在功率受限的设备中正确传输患者的重要生理信号并进行能量管理。为实现这些目标,我们提出了一种针对医疗植入通信服务(MICS)物理层的增强协议,重点关注MICS频段上已部署设备的能源效率。本协议采用具有频移键控(FSK)调制方案的无速率码,以克服由于人体中传播信号的显著衰减而导致的微型植入式传感器中的可靠性和功耗问题。此外,该协议允许收发器电路具有快速启动时间。使用无速率码的主要优点是,由于无速率码率的灵活性,可为功率管理提供固有的自适应占空比。分析结果表明,与用于无线传感器网络的具有相同结构的IEEE 802.15.4物理层标准相比,所提出的协议可实现80%的节能。数值结果表明,对于深部组织(如消化内镜检查)应用,优化的无速率编码FSK比未编码的FSK方案更节能,其中优化是针对调制和编码参数进行的。