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WakeLoc: An Ultra-Low Power, Accurate and Scalable On-Demand RTLS using Wake-Up Radios

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arxiv 2504.20545 v1 pith:HXC274X2 submitted 2025-04-29 cs.NI

classification cs.NI
keywords powerlocalizationrtlsanchorsconsumptionon-demandtagswake-up
verification ladder T0 review T1 audit T2 compute T3 formal
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For future large scale robotic moon missions, the availability of infrastructure-less, cheap and low power real-time locating systems (RTLSs) is critical. Traditional RTLS face significant trade-offs between power consumption and localization latency, often requiring anchors to be connected to the power grid or sacrificing speed for energy efficiency. This paper proposes WakeLoc, an on-demand RTLS based on ultra-wideband (UWB), enabling both low-latency and ultra-low power consumption by leveraging UWB wake-up radios (WuRs). In WakeLoc, tags independently start a localization procedure by sending a wake-up call (WuC) to anchors, before performing the actual localization. Distributed tags equipped with WuRs listen to the WuC and use passive listening of the UWB messages to determine their own position. Experimental measurements demonstrate that the localization accuracy in a 2D setup achieves less than 12.9cm error, both for the active and the passive tag. Additional power simulations based on real-world measurements were performed in a realistic environment, showing that anchors can achieve a power consumption as low as 15.53{\mu}W while the RTLS performs one on-demand localization per minute for 5 tags, thus operate up to 5.01 years on a single coin cell battery (690mWh).

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. WakeMod: A 6.9uW Wake-Up Radio Module with -72.6dBm Sensitivity for On-Demand IoT

    cs.NI 2025-05 conditional novelty 5.0 of 10

    WakeMod, an open-source 868 MHz wake-up transceiver module, achieves 6.9 uW idle power, -72.6 dBm sensitivity, and about 130 m range, enabling multi-year coin-cell IoT deployments.

  2. AniTrack: A Power-Efficient, Time-Slotted and Robust UWB Localization System for Animal Tracking in a Controlled Setting

    cs.RO 2025-05 conditional novelty 4.0 of 10

    A time-slotted, battery-powered UWB localization system using SS-TWR with self-localizing anchors achieves 13.96 cm average 2D accuracy and about 25 days of battery life.

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