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Main Authors: Weragama, Chathuri, Kokkoniemi, Joonas, De Guzman, Mar Francis, Haneda, Katsuyuki, Kyosti, Pekka, Juntti, Markku
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2403.18713
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author Weragama, Chathuri
Kokkoniemi, Joonas
De Guzman, Mar Francis
Haneda, Katsuyuki
Kyosti, Pekka
Juntti, Markku
author_facet Weragama, Chathuri
Kokkoniemi, Joonas
De Guzman, Mar Francis
Haneda, Katsuyuki
Kyosti, Pekka
Juntti, Markku
contents Millimeter-wave (mmWave) and D Band (110--170~GHz) frequencies are poised to play a pivotal role in the advancement of sixth-generation (6G) systems and beyond, owing to their ability to enhance performance metrics such as capacity, ultra-low latency, and spectral efficiency. This paper concentrates on deriving statistical insights into power, delay, and the number of paths based on measurements conducted across four distinct locations at a center frequency of 143.1 GHz. The findings underscore the suitability of various distributions in characterizing power behavior in line-of-sight (LOS) scenarios, including lognormal, Nakagami, gamma, and beta distributions, whereas the loglogistic distribution gives the optimal fit for power distribution in non-line-of-sight (NLOS) scenarios. Moreover, the exponential distribution shows to be the most appropriate model for the delay distribution in both LOS and NLOS scenarios. In terms of the number of paths, observations indicate a tendency for the highest concentration within the 10 m to 30 m distance range between the transmitter (Tx) and receiver (Rx). These insights shed light on the statistical nature of D band propagation characteristics, which are vital for informing the design and optimization of future 6G communication systems
format Preprint
id arxiv_https___arxiv_org_abs_2403_18713
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Characterization of Spatial-Temporal Channel Statistics from Indoor Measurement Data at D Band
Weragama, Chathuri
Kokkoniemi, Joonas
De Guzman, Mar Francis
Haneda, Katsuyuki
Kyosti, Pekka
Juntti, Markku
Information Theory
Signal Processing
Millimeter-wave (mmWave) and D Band (110--170~GHz) frequencies are poised to play a pivotal role in the advancement of sixth-generation (6G) systems and beyond, owing to their ability to enhance performance metrics such as capacity, ultra-low latency, and spectral efficiency. This paper concentrates on deriving statistical insights into power, delay, and the number of paths based on measurements conducted across four distinct locations at a center frequency of 143.1 GHz. The findings underscore the suitability of various distributions in characterizing power behavior in line-of-sight (LOS) scenarios, including lognormal, Nakagami, gamma, and beta distributions, whereas the loglogistic distribution gives the optimal fit for power distribution in non-line-of-sight (NLOS) scenarios. Moreover, the exponential distribution shows to be the most appropriate model for the delay distribution in both LOS and NLOS scenarios. In terms of the number of paths, observations indicate a tendency for the highest concentration within the 10 m to 30 m distance range between the transmitter (Tx) and receiver (Rx). These insights shed light on the statistical nature of D band propagation characteristics, which are vital for informing the design and optimization of future 6G communication systems
title Characterization of Spatial-Temporal Channel Statistics from Indoor Measurement Data at D Band
topic Information Theory
Signal Processing
url https://arxiv.org/abs/2403.18713