Memristor for energy efficient wireless sensor node

Y. Halawani, B. Mohammad, Dirar Humouz, M. Al-Qutayri, H. Saleh
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引用次数: 1

Abstract

Wireless sensor nodes (WSN) are used extensively to monitor a wide range of physical and environmental parameters. Data acquisition, processing, storage and transmission are mandatory requirements for different applications. These nodes are expected to generate a correct representation of the sensed quantities, which is then used to make various decisions and control actions. This means that the node requires more memory capabilities to store data either temporary or permanently. The collected data can then be used. As the monitoring device of WSN is increasingly mobile, the need for efficient power management (PM) techniques is becoming crucial in order to extend the lifetime of the battery-powered device. Energy is a critical performance metric in WSNs. Challenges facing WSN designers range from computational energy, energy consumption, energy source, communication channels, etc. A new emerging memory technology like memristor provides a good candidate for WSN PM. Memristor non-volatility features coupled with small size and low energy operation provide a normally-off instant-on mode of operation for the WSN; this will minimize the loss of energy to leakage power. The paper gives an insight about using memristor in a PM scheme at the system level.
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用于节能无线传感器节点的忆阻器
无线传感器节点(WSN)广泛用于监测各种物理和环境参数。数据的采集、处理、存储和传输是不同应用的强制性要求。这些节点被期望生成感测数量的正确表示,然后用于做出各种决策和控制动作。这意味着节点需要更多的内存能力来存储临时或永久的数据。然后可以使用收集到的数据。随着无线传感器网络监控设备的移动性越来越强,为了延长电池供电设备的使用寿命,对高效电源管理(PM)技术的需求变得至关重要。能量是无线传感器网络的关键性能指标。WSN设计者面临的挑战包括计算能耗、能耗、能源、通信渠道等。忆阻器等新兴的存储技术为无线传感器网络的PM提供了一个很好的选择。忆阻器的非易失性特点,加上小尺寸和低能量的工作,为WSN提供了正常关闭的瞬时工作模式;这将最大限度地减少泄漏电源的能量损失。本文给出了在系统级的PM方案中使用忆阻器的见解。
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