会议论文详细信息
1st International Conference on Mechanical Electronic and Biosystem Engineering
Ultra-Wideband Confocal Microwave Imaging for Brain Tumor Detection
Jamlos, M.A.^1 ; Mustafa, W.A.^1 ; Husna, Nurasma^1 ; Syed Idrus, S.Z.^2 ; Khairunizam, Wan^3 ; Zunaidi, I.^4 ; Razlan, Z.M.^3 ; Shahriman, A.B.^3
Faculty of Engineering Technology, Kampus Sg. Chuchuh, Universiti Malaysia Perlis, Padang Besar, Perlis
02100, Malaysia^1
Center of Excellence Geopolymer and Green Technology, Universiti Malaysia Perlis, Kangar, Perlis
01000, Malaysia^2
Advanced Intelligent Computing and Sustainability (AICoS) Research Group, School of Mechatronics Engineering, Universiti Malaysia Perlis, Malaysia., Arau
02600, Malaysia^3
Faculty of Technology, University of Sunderland, St Peter's Campus, SR6 0DD, Sunderland, United Kingdom^4
关键词: Antenna transmits;    Confocal microwave imaging;    Delay and sums;    Human-head phantom;    Imaging algorithm;    Matrix Laboratories;    Microwave imaging systems;    Scattered waves;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/557/1/012002/pdf
DOI  :  10.1088/1757-899X/557/1/012002
来源: IOP
PDF
【 摘 要 】
A high-performance UWB array antenna to identify a tumor in a human brain phantom using confocal microwave imaging technique is presented. The antenna operated within the ultra-wideband (UWB) from 1.2 GHz to 10.8 GHz. Its high gains of between 5.2 dB and 14.5 dB and compact 90 mm × 45 mm size enabled its functionality and eased its integration into the microwave imaging system. Besides developing UWB array antenna as the sensor, a low-cost human head phantom represented by tissue simulating liquid as layers of skin, fat, skull, and brain are also developed. The antenna transmits the signal through the head phantom from 9 different points and receives the scattered waves under two different conditions; in the presence and absence of the tumor. The recorded scattering parameters are further processed in an improved delay and sum imaging algorithm using Matrix Laboratory software to generate an accurate image. The produced image indicated the presence of the tumor with an error of less than 2 cm.
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