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All Outputs (251)

Sum-rate Maximization in Uplink CRAN with a Massive MIMO Fronthaul (2021)
Presentation / Conference Contribution
Maryopi, D., Yingjia, H., & Ikhlef, A. (2021). Sum-rate Maximization in Uplink CRAN with a Massive MIMO Fronthaul. . https://doi.org/10.1109/GCWkshps52748.2021.9681970

The limited fronthaul capacity is known to be one of the main problems in cloud radio access networks (CRANs), especially in the wireless fronthaul links. In this paper, we consider the uplink of a CRAN system, where massive multiple-input multiple-o... Read More about Sum-rate Maximization in Uplink CRAN with a Massive MIMO Fronthaul.

Short-term load forecasting using artificial neural networks and social media data (2021)
Presentation / Conference Contribution
Boyd, A., Sun, H., Black, M., & Jesson, S. (2021). Short-term load forecasting using artificial neural networks and social media data. . https://doi.org/10.1049/icp.2021.1552

Evolving practices around energy generation, storage and trading within the UK have made it more necessary than ever to provide accurate means of forecasting electricity demand. This paper considers deep neural networks with convolutional and recurre... Read More about Short-term load forecasting using artificial neural networks and social media data.

DurLAR: A High-Fidelity 128-Channel LiDAR Dataset with Panoramic Ambient and Reflectivity Imagery for Multi-Modal Autonomous Driving Applications (2021)
Presentation / Conference Contribution
Li, L., Ismail, K. N., Shum, H. P., & Breckon, T. P. (2021). DurLAR: A High-Fidelity 128-Channel LiDAR Dataset with Panoramic Ambient and Reflectivity Imagery for Multi-Modal Autonomous Driving Applications. . https://doi.org/10.1109/3dv53792.2021.00130

We present DurLAR, a high-fidelity 128-channel 3D LiDAR dataset with panoramic ambient (near infrared) and reflectivity imagery, as well as a sample benchmark task using depth estimation for autonomous driving applications. Our driving platform is eq... Read More about DurLAR: A High-Fidelity 128-Channel LiDAR Dataset with Panoramic Ambient and Reflectivity Imagery for Multi-Modal Autonomous Driving Applications.

Horn Antenna Misalignments at 100, 300, 400, and 500 GHz in Close Proximity Communications (2021)
Presentation / Conference Contribution
Sheikh, F., Zantah, Y., Al-Hasan, M., Mabrouk, I., Zarifeh, N., & Kaiser, T. (2021). Horn Antenna Misalignments at 100, 300, 400, and 500 GHz in Close Proximity Communications. . https://doi.org/10.1109/aps/ursi47566.2021.9704736

This paper experimentally assesses the performance of terahertz (THz) wireless links in line-of-sight (LoS) propagation due to misalignments at 100, 300, 400, and 500 GHz carrier frequencies employing off-the-shelf horn antennas. The identical horn a... Read More about Horn Antenna Misalignments at 100, 300, 400, and 500 GHz in Close Proximity Communications.