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Radio-Triggered Wake-Up for Wireless Sensor Networks

机译:无线传感器网络的无线电触发唤醒

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Power management is an important technique to prolong the lifespan of sensor networks. Many power management protocols employ wake-up/sleep schedules, which are often complicated and inefficient. We present power management schemes that eliminate such wake-up periods unless the node indeed needs to wake up. This type of wake-up capability is enabled by a new radio-triggered hardware component inspired by the observation that the wake-up radio signal contains enough energy to trigger a wake-up process. We evaluate the potential power saving in terms of the lifespan of a sensor network application, using experimental data and SPICE circuit simulations. Comparing the result with always-on and rotation-based power management schemes, we find the radio-triggered scheme saves 98% of the energy used in the always-on scheme, and saves over 70% of the energy used in the rotation-based scheme. Consequently, the lifespan increases from 3.3 days (always-on) or 49.5 days (rotation-based) to 178 days (radio-triggered). Furthermore, a store-energy technique can extend operating distance from 10 feet to 22 feet, or even longer if longer latency is acceptable. Wake-up efficiency is evaluated in NS-2 simulations, which show that radio-triggered wake-up has fewer failures, shorter latency, and consistently larger sensing laxity than rotation based wake-up. We also present amplification and radio-triggered IDs which can further enhance performance.
机译:电源管理是延长传感器网络寿命的一项重要技术。许多电源管理协议采用唤醒/睡眠时间表,这通常很复杂且效率低下。我们提出的电源管理方案可以消除此类唤醒时间,除非节点确实需要唤醒。这种类型的唤醒功能是由一个新的无线电触发的硬件组件启用的,该组件受观察到的唤醒无线电信号包含足够的能量来触发唤醒过程的启发。我们使用实验数据和SPICE电路仿真,根据传感器网络应用的使用寿命来评估潜在的节能效果。将结果与永远在线和基于旋转的电源管理方案进行比较,我们发现无线电触发方案节省了永远在线方案使用的98%的能量,并且节省了超过70%的基于永远在线的方案使用的能量方案。因此,寿命从3.3天(始终打开)或49.5天(基于轮换)增加到178天(通过无线电触发)。此外,存储能量技术可以将操作距离从10英尺扩展到22英尺,如果可以接受更长的等待时间,甚至可以更长。在NS-2仿真中评估了唤醒效率,该仿真表明,与基于旋转的唤醒相比,无线电触发的唤醒具有更少的故障,更短的等待时间以及始终如一的更大的感应松弛度。我们还介绍了可以进一步提高性能的放大和无线电触发的ID。

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