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Wake-Up Control Adapting to Destination's Active/Sleep State for On-Demand Wireless Sensor Networks

机译:适用于按需无线传感器网络的,适应目的地活动/睡眠状态的唤醒控制

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This paper focuses on on-demand wireless sensor networks (WSNs) where a wake-up receiver is installed into each node. In on-demand WSNs, each node sends a wake-up signal including a wake-up ID assigned to a specific destination node in order to remotely activate its main radio interface. This wake-up control helps each node to reduce energy consumed during idle periods, however, the wake-up signal transmitted before every data transmission results in overhead causing degradation of communication quality and increase of energy consumption at each sender node. In order to reduce the overhead for wake-up control, a scheme called Double Modulation (DM) has been proposed, where each node embeds a sensing data to be transmitted into the payload field of a wake-up signal. However, the efficiency of DM scheme becomes smaller as the size of sensing data is increased. Therefore, in this paper, we propose a scheme called Overhearing (OH) that can alleviate the negative impact of wake-up overhead for any size of sensing data. In OH scheme, each node observes frames transmitted by a destination node and suppresses the transmission of wake-up signal when detecting the active state of their destination. Furthermore, we propose a hybrid scheme that combines OH and DM schemes. Our simulation results show that the proposed hybrid scheme can effectively reduce the negative impact of wake-up overhead.
机译:本文重点介绍按需无线传感器网络(WSN),其中在每个节点上都安装了唤醒接收器。在按需WSN中,每个节点都发送唤醒信号,该信号包括分配给特定目标节点的唤醒ID,以便远程激活其主无线电接口。该唤醒控制有助于每个节点减少空闲期间消耗的能量,但是,在每次数据传输之前发送的唤醒信号会导致开销,从而导致通信质量下降并增加每个发送方节点的能耗。为了减少唤醒控制的开销,已经提出了一种称为双调制(DM)的方案,其中每个节点将要发送的感测数据嵌入到唤醒信号的有效载荷字段中。然而,DM方案的效率随着感测数据的大小的增加而变小。因此,在本文中,我们提出了一种称为监听(OH)的方案,该方案可以减轻任何大小的传感数据的唤醒开销的负面影响。在OH方案中,每个节点观察目标节点传输的帧,并在检测到其目标的活动状态时抑制唤醒信号的传输。此外,我们提出了一种混合方案,将OH和DM方案结合在一起。我们的仿真结果表明,提出的混合方案可以有效地减少唤醒开销的负面影响。

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