English

An Empirical Air-to-Ground Channel Model Based on Passive Measurements in LTE

Signal Processing 2021-07-27 v1

Abstract

In this paper, a recently conducted measurement campaign for unmanned-aerial-vehicle (UAV) channels is introduced. The downlink signals of an in-service long-time-evolution (LTE) network which is deployed in a suburban scenario were acquired. Five horizontal and five vertical flight routes were considered. The channel impulse responses (CIRs) are extracted from the received data by exploiting the cell specific signals (CRSs). Based on the CIRs, the parameters of multipath components (MPCs) are estimated by using a high-resolution algorithm derived according to the space-alternating generalized expectation-maximization (SAGE) principle. Based on the SAGE results, channel characteristics including the path loss, shadow fading, fast fading, delay spread and Doppler frequency spread are thoroughly investigated for different heights and horizontal distances, which constitute a stochastic model.

Keywords

Cite

@article{arxiv.1901.07930,
  title  = {An Empirical Air-to-Ground Channel Model Based on Passive Measurements in LTE},
  author = {Xuesong Cai and José Rodríguez-Piñeiro and Xuefeng Yin and Bo Ai and Gert Frølund Pedersen and Antonio Pérez Yuste},
  journal= {arXiv preprint arXiv:1901.07930},
  year   = {2021}
}

Comments

15 pages, submitted version to IEEE Transactions on Vehicular Technology. Current status: Early access