Affiliation:
1. Cold Regions Research and Engineering Laboratory U.S. Army Engineer Research and Development Center Hanover NH USA
Abstract
AbstractThe urban radio‐frequency (RF) noise generated by our cities continues to change with time. Although models exist to describe the RF noise as functions of frequency and urban land use types, very few models describe the spatial character or structure of the noise on the scales of city blocks (50–150 m). The goal of this work is to investigate the connection between urban morphology and the higher‐order spatial statistics of the noise field. To achieve this goal, a large measurement campaign was conducted in Boston, Massachusetts. Many spatial measurements allowed for calculation of spatial correlation functions of noise power in three different neighborhoods, which were used to quantify the spatial structure of the fields. A statistical point source model is then developed, with adjustable parameters relating to urban morphology. Good agreement between the model and the experimental correlation functions suggests the 25 MHz urban noise field is well described by a random network of fixed point sources, radiating with a 1/r power law behavior.
Publisher
American Geophysical Union (AGU)
Reference24 articles.
1. Boston Planning & Development Agency (BPDA). (2018).GIS and UDTG. Retrieved fromhttps://www.arcgis.com/home/item.html?id=c177c65732c24e8c9011f46ce6998317
2. Street‐Scale Mapping of Urban Radio Frequency Noise at Very High Frequency and Ultra High Frequency