Monostatic microwave imaging of cancerous breast phantom with a frequency to time domain conversion technique
The letter presents a method of frequency to time domain conversion of Scattering Parameter data for microwave imaging applications. The time to frequency domain conversion was initially tested in the MATLAB. The testing was conducted in a realistic microwave imaging environment with an antenna and...
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Veröffentlicht in: | Microwave and optical technology letters 2024-02, Vol.66 (2), p.n/a |
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description | The letter presents a method of frequency to time domain conversion of Scattering Parameter data for microwave imaging applications. The time to frequency domain conversion was initially tested in the MATLAB. The testing was conducted in a realistic microwave imaging environment with an antenna and a heterogeneous breast phantom. Note that, the time domain signal obtained from the Vector Network Analyzer (VNA) as well as the time domain signal obtained with the introduced process is similar indicating efficiency of the proposed method. An ultra‐wideband (UWB) signal is transmitted from the transmitting Antipodal Vivaldi Antenna to the breast phantom and the received signals are collected by the same antenna over a monostatic process. A total of 36 antenna rotations were considered while scanning the phantom from various orientations. All the data stored in the VNA is extracted and the proposed frequency to time domain conversion technique was applied to it. Finally, the Delay and Sum beamforming algoirithm was used to reconstruct the target image. |
doi_str_mv | 10.1002/mop.34054 |
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J., Gokul Nath ; Dey, Sukomal</creator><creatorcontrib>Asok, Athul O. ; S. J., Gokul Nath ; Dey, Sukomal</creatorcontrib><description>The letter presents a method of frequency to time domain conversion of Scattering Parameter data for microwave imaging applications. The time to frequency domain conversion was initially tested in the MATLAB. The testing was conducted in a realistic microwave imaging environment with an antenna and a heterogeneous breast phantom. Note that, the time domain signal obtained from the Vector Network Analyzer (VNA) as well as the time domain signal obtained with the introduced process is similar indicating efficiency of the proposed method. An ultra‐wideband (UWB) signal is transmitted from the transmitting Antipodal Vivaldi Antenna to the breast phantom and the received signals are collected by the same antenna over a monostatic process. A total of 36 antenna rotations were considered while scanning the phantom from various orientations. All the data stored in the VNA is extracted and the proposed frequency to time domain conversion technique was applied to it. 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J., Gokul Nath</creatorcontrib><creatorcontrib>Dey, Sukomal</creatorcontrib><title>Monostatic microwave imaging of cancerous breast phantom with a frequency to time domain conversion technique</title><title>Microwave and optical technology letters</title><description>The letter presents a method of frequency to time domain conversion of Scattering Parameter data for microwave imaging applications. The time to frequency domain conversion was initially tested in the MATLAB. The testing was conducted in a realistic microwave imaging environment with an antenna and a heterogeneous breast phantom. Note that, the time domain signal obtained from the Vector Network Analyzer (VNA) as well as the time domain signal obtained with the introduced process is similar indicating efficiency of the proposed method. An ultra‐wideband (UWB) signal is transmitted from the transmitting Antipodal Vivaldi Antenna to the breast phantom and the received signals are collected by the same antenna over a monostatic process. A total of 36 antenna rotations were considered while scanning the phantom from various orientations. All the data stored in the VNA is extracted and the proposed frequency to time domain conversion technique was applied to it. Finally, the Delay and Sum beamforming algoirithm was used to reconstruct the target image.</description><subject>Antennas</subject><subject>Antipodal Vivaldi Antenna (AVA)</subject><subject>Beamforming</subject><subject>Delay and Sum (DAS)</subject><subject>Image reconstruction</subject><subject>microwave imaging</subject><subject>Network analysers</subject><subject>phantom</subject><subject>S parameters</subject><subject>time domain</subject><subject>Time domain analysis</subject><subject>Ultrawideband</subject><subject>ultra‐wideband (UWB)</subject><subject>Vector Network Analyzer (VNA)</subject><issn>0895-2477</issn><issn>1098-2760</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2024</creationdate><recordtype>article</recordtype><recordid>eNp1kD1PwzAURS0EEqUw8A8sMTGk9VfsZEQVXxJVGWC2HMdpXTV2sN1W_fcYwspb3nLeu7oHgFuMZhghMu_9MKMMlewMTDCqq4IIjs7BBFV1WRAmxCW4inGLEKJCkAnol975mFSyGvZWB39UBwNtr9bWraHvoFZOm-D3ETbBqJjgsFEu-R4ebdpABbtgvvbG6RNMHibbG9j6XlkHtXcHE6L1DiajN85m7BpcdGoXzc3fnoLPp8ePxUvxtnp-XTy8FZpizAratkg3JSUNrnHXsE4JUam21ILQstEt4szUnWAEYSx4HtRyWje8qjmhimk6BXfj3yH4HBuT3Pp9cDlSkppixsuS0kzdj1SuHWMwnRxCbh5OEiP5Y1Nmm_LXZmbnI3u0O3P6H5TL1ft48Q1jCnep</recordid><startdate>202402</startdate><enddate>202402</enddate><creator>Asok, Athul O.</creator><creator>S. 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An ultra‐wideband (UWB) signal is transmitted from the transmitting Antipodal Vivaldi Antenna to the breast phantom and the received signals are collected by the same antenna over a monostatic process. A total of 36 antenna rotations were considered while scanning the phantom from various orientations. All the data stored in the VNA is extracted and the proposed frequency to time domain conversion technique was applied to it. Finally, the Delay and Sum beamforming algoirithm was used to reconstruct the target image.</abstract><cop>New York</cop><pub>Wiley Subscription Services, Inc</pub><doi>10.1002/mop.34054</doi><tpages>5</tpages></addata></record> |
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subjects | Antennas Antipodal Vivaldi Antenna (AVA) Beamforming Delay and Sum (DAS) Image reconstruction microwave imaging Network analysers phantom S parameters time domain Time domain analysis Ultrawideband ultra‐wideband (UWB) Vector Network Analyzer (VNA) |
title | Monostatic microwave imaging of cancerous breast phantom with a frequency to time domain conversion technique |
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