Abstract:
Channel measurements at sufficiently high bandwidth in multipath-rich environments include a variety of delay information, which, if accurately extracted, can be exploite...Show MoreMetadata
Abstract:
Channel measurements at sufficiently high bandwidth in multipath-rich environments include a variety of delay information, which, if accurately extracted, can be exploited for accurate positioning. While previous methods are limited in practice as they rely on iteratively extracting a fixed number of delays, we instead formulate the delay extraction problem as a time series segmentation task. For this, we propose a pipeline built upon the U-Net convolutional neural network architecture. Unlike the state of the art our pipeline extracts an arbitrary number of delays without prior knowledge, includes a threshold for weighting between detection rate and false alarms, and does not rely on computationally demanding operations such as eigenvalue decomposition. We evaluate the presented method with synthetic data of different noise configurations and signal bandwidths and a publicly available dataset, achieving considerable performance gains w.r.t. detection performance and tracking accuracy. Furthermore, we show that the proposed method is far less computationally demanding in inference.
Date of Conference: 10-13 April 2022
Date Added to IEEE Xplore: 16 May 2022
ISBN Information:
ISSN Information:
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- IEEE Keywords
- Index Terms
- Time Series ,
- Delay Estimation ,
- Time Series Segments ,
- Dense Multipath ,
- Dense Multipath Environments ,
- Neural Network ,
- Convolutional Neural Network ,
- State Of The Art ,
- Detection Performance ,
- False Alarm ,
- Performance Gain ,
- Convolutional Neural Network Architecture ,
- Signal Bandwidth ,
- Channel Measurements ,
- Number Of Delays ,
- Deep Neural Network ,
- Convolutional Layers ,
- Spatial Information ,
- Time Domain ,
- Additive Noise ,
- Multipath Components ,
- U-Net Architecture ,
- Deterministic Component ,
- Minimum Description Length ,
- Peak Extraction ,
- Spatial Components ,
- Real-world Datasets ,
- Line-of-sight Component ,
- Baseline Methods ,
- Channel Impulse Response
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Time Series ,
- Delay Estimation ,
- Time Series Segments ,
- Dense Multipath ,
- Dense Multipath Environments ,
- Neural Network ,
- Convolutional Neural Network ,
- State Of The Art ,
- Detection Performance ,
- False Alarm ,
- Performance Gain ,
- Convolutional Neural Network Architecture ,
- Signal Bandwidth ,
- Channel Measurements ,
- Number Of Delays ,
- Deep Neural Network ,
- Convolutional Layers ,
- Spatial Information ,
- Time Domain ,
- Additive Noise ,
- Multipath Components ,
- U-Net Architecture ,
- Deterministic Component ,
- Minimum Description Length ,
- Peak Extraction ,
- Spatial Components ,
- Real-world Datasets ,
- Line-of-sight Component ,
- Baseline Methods ,
- Channel Impulse Response
- Author Keywords