scholarly journals A Review of Passive and Active Ultra-Wideband Baluns for Use in Ground Penetrating Radar

2021 ◽  
Vol 13 (10) ◽  
pp. 1899
Author(s):  
Wouter van Verre ◽  
Frank J. W. Podd ◽  
Xianyang Gao ◽  
David J. Daniels ◽  
Anthony J. Peyton

Microwave ultra-wideband technology has been widely adopted in instrumentation and measurement systems, including ground-penetrating radar (GPR) sensors. Baluns are essential components in these systems to feed balanced antennas from unbalanced feed cables. Baluns are typically introduced to avoid issues with return signals, asymmetrical radiation patterns and radiation from cables. In GPR systems, these issues can cause poor sensitivity due to a reduction in radiated power, blind spots due to changes in the radiation pattern and additional clutter from common mode radiation. The different balun technologies currently available exhibit a wide variation in performance characteristics such as insertion loss, reflection coefficient and phase balance, as well as physical properties such as size and manufacturability. In this study, the performance of two magnetic transformer baluns, two tapered microstrip baluns and an active balun based on high-speed amplifiers were investigated, all up to frequencies of 6 GHz. A radio frequency current probe was used to measure the common mode currents on the feed cables that occur with poor performing baluns. It was found that commercially available magnetic transformer baluns have the best phase linearity, while also having the highest insertion losses. The active balun design has the best reflection coefficient at low frequencies, while, at high frequencies, its performance is similar to the other baluns tested. It was found that the active balun had the lowest common mode current on the feed cables.

Author(s):  
M. S. Sudakova ◽  
M. L. Vladov ◽  
M. R. Sadurtdinov

Within the ground penetrating radar bandwidth the medium is considered to be an ideal dielectric, which is not always true. Electromagnetic waves reflection coefficient conductivity dependence showed a significant role of the difference in conductivity in reflection strength. It was confirmed by physical modeling. Conductivity of geological media should be taken into account when solving direct and inverse problems, survey design planning, etc. Ground penetrating radar can be used to solve the problem of mapping of halocline or determine water contamination.


2013 ◽  
Vol 25 (3) ◽  
pp. 680-684
Author(s):  
张春艳 Zhang Chunyan ◽  
赵青 Zhao Qing ◽  
刘成林 Liu Chenglin ◽  
周强 Zhou Qiang ◽  
刘冲 Liu Chong ◽  
...  

Author(s):  
Filippo Parrini ◽  
Matteo Fratini ◽  
Massimiliano Pieraccini ◽  
Carlo Atzeni ◽  
Gaetano De Pasquale ◽  
...  

2012 ◽  
Author(s):  
Stephen Sebesta ◽  
Timo Saarenketo ◽  
Tom Scullion ◽  
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