Research Article

Wireless Signal Attenuation by Vegetation: Relationship Between Tree Characteristics and Signal Attenuation

Volume: 8 Number: 1 March 29, 2021
EN

Wireless Signal Attenuation by Vegetation: Relationship Between Tree Characteristics and Signal Attenuation

Abstract

Vegetation is a significant factor that affects the Quality of Service of radio waves. Several measurement campaigns have been conducted to predict the effect of trees on a radio wave at the micro and millimetre wavelengths. The experiments show that depth of vegetation is a major factor that contribute to signal attenuation. Furthermore, different components of the vegetation cause different behaviours of the radio wave. The empirical models did not put into to consideration the characteristics of the trees in the vegetation. The analytical approaches using wave theory have considered the vegetation characteristics, density and the geometry. This paper focuses on using existing models to characterise a vegetation based on measured parameters of a tree stand with a view to estimating the density of the foliage within a vegetation accurately. The foliage density will be used as the vegetation parameter in the wave theory model. Simulation of the signal attenuation will be conducted based on the density of the vegetation that will be estimated. The tree species selected for simulation are Pinus, Ash and Silver Birch tree species.

Keywords

References

  1. Adegoke, A. S., & Siddle, D. (2012, May). Investigation into vegetation effects on propagating radio waves. Conference on Applied Radio System Research (ARSR-SWICOM), University of Manchester, United Kingdom.
  2. Al-Basheir, M. S., Shubair, R. M., & Sharif, S. M. (2006). Measurements and analysis for signal attenuation through date palm trees at 2.1 GHz frequency. Sudan Engineering Society Journal, 52(45), 17-22.
  3. Al-Naimi, M. O., & Hammoudeh, A. M. (1993). Influence of Vegetation on Attenuation of Radio wave Signals in the X-Band Frequency Region. COST 235 TD, CP 149.
  4. Arzai, A., & Aliyu, B. (2010). The relationship between canopy width, height and trunk size in some tree species growing in the Savana zone of Nigeria. Bayero Journal of Pure and Applied Sciences, 3(1), 260-263. doi:10.4314/bajopas.v3i1.58808
  5. BBC & ITC (1998). The Effect of Trees on Television Reception. Arboricultural Advisory & Information Service, Arboriculture Research Note: 146/98/TV. (Accessed: 06/07/2015) www.users.globalnet.co.uk/~skellern/download/tv_reception.pdf
  6. Bragg, D. C. (2001). A local basal area adjustment for crown width prediction. Northern Journal of Applied Forestry, 18(1), 22-28.
  7. Burgin, M., Clewley, D., Lucas, R. M., & Moghaddam, M. (2011). A Generalized Radar Backscattering Model Based on Wave Theory for Multilayer Multispecies Vegetation. IEEE Transactions on Geoscience and Remote Sensing, 49(12), 4832-4845. doi:10.1109/TGRS.2011.2172949
  8. Corral-Rivas, S., Álvarez-González, J., Crecente-Campo, F., & Corral-Rivas, J. (2014). Local and generalized height-diameter models with random parameters for mixed, uneven-aged forests in Northwestern Durango, Mexico. Forest Ecosystems, 1(1), 6. doi:10.1186/2197-5620-1-6

Details

Primary Language

English

Subjects

-

Journal Section

Research Article

Publication Date

March 29, 2021

Submission Date

July 17, 2020

Acceptance Date

March 21, 2021

Published in Issue

Year 2021 Volume: 8 Number: 1

APA
Abba Kyari, Y., & Agajo, J. (2021). Wireless Signal Attenuation by Vegetation: Relationship Between Tree Characteristics and Signal Attenuation. Gazi University Journal of Science Part A: Engineering and Innovation, 8(1), 58-80. https://izlik.org/JA96FW33DA
AMA
1.Abba Kyari Y, Agajo J. Wireless Signal Attenuation by Vegetation: Relationship Between Tree Characteristics and Signal Attenuation. GU J Sci, Part A. 2021;8(1):58-80. https://izlik.org/JA96FW33DA
Chicago
Abba Kyari, Yusuf, and James Agajo. 2021. “Wireless Signal Attenuation by Vegetation: Relationship Between Tree Characteristics and Signal Attenuation”. Gazi University Journal of Science Part A: Engineering and Innovation 8 (1): 58-80. https://izlik.org/JA96FW33DA.
EndNote
Abba Kyari Y, Agajo J (March 1, 2021) Wireless Signal Attenuation by Vegetation: Relationship Between Tree Characteristics and Signal Attenuation. Gazi University Journal of Science Part A: Engineering and Innovation 8 1 58–80.
IEEE
[1]Y. Abba Kyari and J. Agajo, “Wireless Signal Attenuation by Vegetation: Relationship Between Tree Characteristics and Signal Attenuation”, GU J Sci, Part A, vol. 8, no. 1, pp. 58–80, Mar. 2021, [Online]. Available: https://izlik.org/JA96FW33DA
ISNAD
Abba Kyari, Yusuf - Agajo, James. “Wireless Signal Attenuation by Vegetation: Relationship Between Tree Characteristics and Signal Attenuation”. Gazi University Journal of Science Part A: Engineering and Innovation 8/1 (March 1, 2021): 58-80. https://izlik.org/JA96FW33DA.
JAMA
1.Abba Kyari Y, Agajo J. Wireless Signal Attenuation by Vegetation: Relationship Between Tree Characteristics and Signal Attenuation. GU J Sci, Part A. 2021;8:58–80.
MLA
Abba Kyari, Yusuf, and James Agajo. “Wireless Signal Attenuation by Vegetation: Relationship Between Tree Characteristics and Signal Attenuation”. Gazi University Journal of Science Part A: Engineering and Innovation, vol. 8, no. 1, Mar. 2021, pp. 58-80, https://izlik.org/JA96FW33DA.
Vancouver
1.Yusuf Abba Kyari, James Agajo. Wireless Signal Attenuation by Vegetation: Relationship Between Tree Characteristics and Signal Attenuation. GU J Sci, Part A [Internet]. 2021 Mar. 1;8(1):58-80. Available from: https://izlik.org/JA96FW33DA