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Potential of Wake-Up Radio-Based MAC Protocols for Implantable Body Sensor Networks (IBSN)—A Survey

机译:植入式人体传感器网络(IBSN)的基于无线电的唤醒无线电MAC协议的潜力-调查

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With the advent of nano-technology, medical sensors and devices are becoming highly miniaturized. Consequently, the number of sensors and medical devices being implanted to accurately monitor and diagnose a disease is increasing. By measuring the symptoms and controlling a medical device as close as possible to the source, these implantable devices are able to save lives. A wireless link between medical sensors and implantable medical devices is essential in the case of closed-loop medical devices, in which symptoms of the diseases are monitored by sensors that are not placed in close proximity of the therapeutic device. Medium Access Control (MAC) is crucial to make it possible for several medical devices to communicate using a shared wireless medium in such a way that minimum delay, maximum throughput, and increased network life-time are guaranteed. To guarantee this Quality of Service (QoS), the MAC protocols control the main sources of limited resource wastage, namely the idle-listening, packet collisions, over-hearing, and packet loss. Traditional MAC protocols designed for body sensor networks are not directly applicable to Implantable Body Sensor Networks (IBSN) because of the dynamic nature of the radio channel within the human body and the strict QoS requirements of IBSN applications. Although numerous MAC protocols are available in the literature, the majority of them are designed for Body Sensor Network (BSN) and Wireless Sensor Network (WSN). To the best of our knowledge, there is so far no research paper that explores the impact of these MAC protocols specifically for IBSN. MAC protocols designed for implantable devices are still in their infancy and one of their most challenging objectives is to be ultra-low-power. One of the technological solutions to achieve this objective so is to integrate the concept of Wake-up radio (WuR) into the MAC design. In this survey, we present a taxonomy of MAC protocols based on their use of WuR technology and identify their bottlenecks to be used in IBSN applications. Furthermore, we present a number of open research challenges and requirements for designing an energy-efficient and reliable wireless communication protocol for IBSN.
机译:随着纳米技术的出现,医疗传感器和设备正变得高度小型化。因此,被植入以精确地监视和诊断疾病的传感器和医疗设备的数量正在增加。通过测量症状并控制医疗设备,使其离源头尽可能近,这些可植入设备可以挽救生命。在闭环医疗设备的情况下,医疗传感器和可植入医疗设备之间的无线链接是必不可少的,在这种情况下,疾病的症状由未放置在治疗设备附近的传感器监控。媒体访问控制(MAC)对于使多个医疗设备能够使用共享的无线媒体进行通信,从而确保最小的延迟,最大的吞吐量和更长的网络使用寿命至关重要。为了保证这种服务质量(QoS),MAC协议控制了有限资源浪费的主要来源,即空闲监听,数据包冲突,监听和数据包丢失。由于人体内部无线电信道的动态特性以及IBSN应用对QoS的严格要求,为人体传感器网络设计的传统MAC协议不能直接应用于植入式人体传感器网络(IBSN)。尽管文献中提供了许多MAC协议,但其中大多数是为身体传感器网络(BSN)和无线传感器网络(WSN)设计的。据我们所知,到目前为止,还没有研究论文专门探讨这些MAC协议对IBSN的影响。专为可植入设备设计的MAC协议仍处于起步阶段,其最具挑战性的目标之一就是实现超低功耗。因此,实现这一目标的技术解决方案之一就是将唤醒无线电(WuR)的概念集成到MAC设计中。在本次调查中,我们根据MAC协议对WuR技术的使用提出了一种分类法,并确定了在IBSN应用中使用的瓶颈。此外,在为IBSN设计节能高效且可靠的无线通信协议时,我们提出了许多开放的研究挑战和要求。

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