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Regret minimization based adaptation of the energy detection threshold in body area networks

机译:基于后悔最小化的人体区域网络能量检测阈值调整

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IEEE802.15.6 is a radio interface standard for wireless connectivity of wearable and implantable sensors and actuators located inside or in close proximity to the human body i.e., Body Area Network (BAN). Medical applications impose stringent requirements on BAN Quality of Service (QoS), including reliability and on-time availability of the sensors data. However, interference from other co-located BANs or other nearby devices sharing the same spectrum may cause unacceptable QoS degradation. The impact of such degradations can be minimized by using adaptive schemes that intelligently adjust relevant parameters at the transmitting or receiving nodes of a BAN. This paper provides a framework for low complexity regret minimization based algorithms for Energy Detection Threshold (EDT) adaptation in the transmitter node of a BAN. The nodes are assumed to be using the Carrier Sense Multiple Access with Collision Avoidance (CSMA/CA) protocol according to the IEEE 802.15.6 BAN standard. Our preliminary simulation results demonstrate the performance gain of our algorithm compared to using a fixed EDT, and thus warrant future efforts in the adaptive EDT optimization as a mechanism to maintain QoS in various interference scenarios.
机译:IEEE802.15.6是一种无线电接口标准,用于位于人体内部或紧邻人体的可穿戴和可植入传感器与执行器的无线连接,即人体局域网(BAN)。医疗应用对BAN服务质量(QoS)提出了严格的要求,包括传感器数据的可靠性和及时可用性。但是,来自其他位于同一频谱的BAN或其他附近共享同一频谱的设备的干扰可能会导致QoS下降。可以通过使用自适应方案来最大程度地降低此类降级的影响,这些方案可以智能地调整BAN的发送或接收节点处的相关参数。本文为低复杂度基于后悔最小化的BAN发射机节点中能量检测阈值(EDT)自适应算法提供了框架。假定这些节点正在使用根据IEEE 802.15.6 BAN标准的带有冲突避免的载波侦听多路访问(CSMA / CA)协议。我们的初步仿真结果证明了与使用固定EDT相比,我们算法的性能提升,因此有必要在未来进行自适应EDT优化,作为在各种干扰情况下维持QoS的机制。

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