TiamiTwin: A Digital Twin for Bistatic ISAC Drone Sensing, Validated Against Measurements

📅 2026-09-18
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本文通过实测数据验证了TiamiTwin数字孪生系统在双静态ISAC无人机感知中的有效性,用于解决关键基础设施低空监测问题。
📝 Abstract
Monitoring lower airspace over critical infrastructure using cellular signals of opportunity is highly practical because transmitters are pre-deployed, licensed, and continuously active. Digital twins can evaluate the feasibility of such integrated sensing and communication (ISAC) architectures, but their predictive accuracy must be validated against real-world data. This paper reports validation results for TiamiTwin, a digital twin developed for bistatic ISAC drone sensing, using empirical measurements from an operational 5G deployment featuring a commercial band n41 gNB and a receiver separated by 572.8 m over a non-line-of-sight (NLOS) channel. TiamiTwin incorporates three parallel channel representations evaluated on a 240-subcarrier grid: the 3GPP TR 38.901 (Release 19) bistatic ISAC model, a ray-traced site model, and the captured field measurements. Empirical results demonstrate that both statistical and ray-tracing models under-predict the measured root-mean-square (RMS) delay spread by approximately a factor of three. Furthermore, target reflections sit 68 dB below static clutter in power, making target detection entirely dependent on Doppler separation to isolate the drone from zero-Doppler background returns. Despite this severe clutter environment, the target remains separable along 88% of the flight path in the delay, Doppler, or joint delay-Doppler domains.
Problem

Research questions and friction points this paper is trying to address.

bistatic ISAC
digital twin
drone sensing
cellular signals
NLOS channel
Innovation

Methods, ideas, or system contributions that make the work stand out.

bistatic ISAC
digital twin
empirical validation
clutter environment
Doppler separation
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Mehdi Zafari
Department of Electrical Engineering and Computer Science, University of California, Irvine, CA, USA
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Saeede Enayati
Tiami Labs, Sacramento, CA, USA
A. Lee Swindlehurst
A. Lee Swindlehurst
Professor of Electrical Engineering and Computer Science, University of California Irvine
signal processingwireless communicationssensor arraysradar
Amitav Mukherjee
Amitav Mukherjee
Tiami Labs, Sacramento, CA, USA