A First Implementation of Underwater Communications in Raw Water Using the 433 MHz Frequency Combined with a Bowtie Antenna
Первое применение подводной связи в исходной (неочищенной) воде на частоте 433 МГц с использованием бант-антенны
2019-04-16
SCID: 54.1/azsrvg9u
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433 MHzbowtie antennaraw waterunderwater communicationswireless sensor networks
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Abstract (AI)
In 2016, there were 317 serious water pollution incidents in the UK, with 78,000 locations where businesses discharge controlled quantities of pollutants into rivers; therefore, continuous monitoring is vital. Since 1998, the environment agency has taken over 50 million water samples for water quality monitoring. The Internet of Things has grown phenomenally in recent years, reaching all aspects of our lives, many of these connected devices use wireless sensor networks to relay data to internet-connected nodes, where data can be processed, analyzed and consumed. However, Underwater wireless communications rely mainly on alternative communication methods such as optical and acoustic, with radio frequencies being an under-exploited method. This research presents real world results conducted in the Leeds and Liverpool Canal for the novel use of the 433 MHz radio frequency combined with a bowtie antenna in underwater communications in raw water, achieving distances of 7 m at 1.2 kbps and 5 m at 25 kbps.
Key Findings
1
Achieved communication distance of 5 m at 25 kbps in the same real-world tests.
2
Achieved communication distance of 7 m at 1.2 kbps in real-world Leeds and Liverpool Canal tests.
3
Radio frequencies (433 MHz) are a viable, under-explored alternative to optical and acoustic underwater communications for short-range monitoring.
4
Underwater radio-frequency communication using 433 MHz with a bowtie antenna is demonstrated in raw canal water.
Research Object
Underwater wireless communication system using 433 MHz radio frequency with a bowtie antenna in raw water (Leeds and Liverpool Canal)
Research Subject
Communication performance (achievable range and data rates) of 433 MHz radio transmission with a bowtie antenna in underwater/raw water environments
Publication Details
Publication Date
2019-04-16
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