TY - GEN
T1 - Measurement-based Characterization of ISAC Channels with Distributed Beamforming at Dual mmWave Bands and with Human Body Scattering and Blockage
AU - Miao, Yang
AU - Kim, Minseok
AU - Suzuki, Naoya
AU - Kang, Chechia
AU - Takada, Junichi
N1 - Publisher Copyright:
© 2024 IEEE.
PY - 2025/3/11
Y1 - 2025/3/11
N2 - In this paper, we introduce our millimeter-wave (mmWave) radio channel measurement for integrated sensing and communication (ISAC) scenarios with distributed links at dual bands in an indoor cavity; we also characterize the channel in delay and azimuth-angular domains for the scenarios with the presence of 1 person with varying locations and facing orientations. In our setting of distributed links with two transmitters and two receivers where each transceiver operates at two bands, we can measure two links whose each transmitter faces to one receiver and thus capable of line-of-sight (LOS) communication; these two links have crossing Fresnel zones. We have another two links capable of capturing the reflectivity from the target presenting in the test area (as well as the background). The numerical results in this paper focus on analyzing the channel with the presence of one person. It is evident that not only the human location, but also the human facing orientation, shall be taken into account when modeling the ISAC channel.
AB - In this paper, we introduce our millimeter-wave (mmWave) radio channel measurement for integrated sensing and communication (ISAC) scenarios with distributed links at dual bands in an indoor cavity; we also characterize the channel in delay and azimuth-angular domains for the scenarios with the presence of 1 person with varying locations and facing orientations. In our setting of distributed links with two transmitters and two receivers where each transceiver operates at two bands, we can measure two links whose each transmitter faces to one receiver and thus capable of line-of-sight (LOS) communication; these two links have crossing Fresnel zones. We have another two links capable of capturing the reflectivity from the target presenting in the test area (as well as the background). The numerical results in this paper focus on analyzing the channel with the presence of one person. It is evident that not only the human location, but also the human facing orientation, shall be taken into account when modeling the ISAC channel.
KW - 2026 OA procedure
KW - delay spread
KW - distributed multiple input multiple output (MIMO)
KW - Integrated Sensing and Communication (ISAC)
KW - Joint Communication and Sensing
KW - millimeter-wave (mmWave) dual-band
KW - person location and orientation
KW - power angular profile
KW - power delay profile
KW - angular spread
UR - https://www.scopus.com/pages/publications/105000828748
U2 - 10.1109/GLOBECOM52923.2024.10901219
DO - 10.1109/GLOBECOM52923.2024.10901219
M3 - Conference contribution
AN - SCOPUS:105000828748
T3 - Proceedings - IEEE Global Communications Conference, GLOBECOM
SP - 1900
EP - 1905
BT - GLOBECOM 2024 - 2024 IEEE Global Communications Conference
PB - IEEE
T2 - IEEE Global Communications Conference, GLOBECOM 2024
Y2 - 8 December 2024 through 12 December 2024
ER -