Kalman Filter and wavelet cross-correlation for VHF broadband interferometer lightning mapping
Lightning mapping systems based on perpendicular crossed baseline interferometer (ITF) technology have been developed rapidly in recent years. Several processing methods have been proposed to estimate the temporal location and spatial map of lightning strikes. In this paper, a single very high frequ...
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2020
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Online Access: | http://eprints.utm.my/id/eprint/93366/1/MonaRizaMohdEsa2020_KalmanFilterandWaveletCrossCorrelation.pdf http://eprints.utm.my/id/eprint/93366/ http://dx.doi.org/10.3390/app10124238 |
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my.utm.933662021-11-30T08:21:38Z http://eprints.utm.my/id/eprint/93366/ Kalman Filter and wavelet cross-correlation for VHF broadband interferometer lightning mapping Alammari, Ammar Alkahtani, Ammar A. Ahmad, Mohd. Riduan Noman, Fuad Mohd. Esa, Mona Riza Mohammad Sabri, Muhammad Haziq Ali Mohammad, Sulaiman Al Khaleefa, Ahmed Salih Kawasaki, Zen Agelidis, Vassilios TK Electrical engineering. Electronics Nuclear engineering Lightning mapping systems based on perpendicular crossed baseline interferometer (ITF) technology have been developed rapidly in recent years. Several processing methods have been proposed to estimate the temporal location and spatial map of lightning strikes. In this paper, a single very high frequency (VHF) ITF is used to simulate and augment the lightning maps. We perform a comparative study of using different processing techniques and procedures to enhance the localization and mapping of lightning VHF radiation. The benchmark environment involves the use of different noise reduction and cross-correlation methods. Moreover, interpolation techniques are introduced to smoothen the correlation peaks for more accurate lightning localization. A positive narrow bipolar event (NBE) lightning discharge is analyzed and the mapping procedure is confirmed using both simulated and measured lightning signals. The results indicate that a good estimation of lightning radiation sources is achieved when using wavelet denoising and cross-correlations in wavelet-domain (CCWD) with a minimal error of 3.46ffi. The investigations carried out in this study confirm that the ITF mapping system could effectively map the lightning VHF radiation source. MDPI AG 2020 Article PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/93366/1/MonaRizaMohdEsa2020_KalmanFilterandWaveletCrossCorrelation.pdf Alammari, Ammar and Alkahtani, Ammar A. and Ahmad, Mohd. Riduan and Noman, Fuad and Mohd. Esa, Mona Riza and Mohammad Sabri, Muhammad Haziq and Ali Mohammad, Sulaiman and Al Khaleefa, Ahmed Salih and Kawasaki, Zen and Agelidis, Vassilios (2020) Kalman Filter and wavelet cross-correlation for VHF broadband interferometer lightning mapping. Applied Sciences (Switzerland), 10 (12). pp. 1-14. ISSN 2076-3417 http://dx.doi.org/10.3390/app10124238 |
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TK Electrical engineering. Electronics Nuclear engineering Alammari, Ammar Alkahtani, Ammar A. Ahmad, Mohd. Riduan Noman, Fuad Mohd. Esa, Mona Riza Mohammad Sabri, Muhammad Haziq Ali Mohammad, Sulaiman Al Khaleefa, Ahmed Salih Kawasaki, Zen Agelidis, Vassilios Kalman Filter and wavelet cross-correlation for VHF broadband interferometer lightning mapping |
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Lightning mapping systems based on perpendicular crossed baseline interferometer (ITF) technology have been developed rapidly in recent years. Several processing methods have been proposed to estimate the temporal location and spatial map of lightning strikes. In this paper, a single very high frequency (VHF) ITF is used to simulate and augment the lightning maps. We perform a comparative study of using different processing techniques and procedures to enhance the localization and mapping of lightning VHF radiation. The benchmark environment involves the use of different noise reduction and cross-correlation methods. Moreover, interpolation techniques are introduced to smoothen the correlation peaks for more accurate lightning localization. A positive narrow bipolar event (NBE) lightning discharge is analyzed and the mapping procedure is confirmed using both simulated and measured lightning signals. The results indicate that a good estimation of lightning radiation sources is achieved when using wavelet denoising and cross-correlations in wavelet-domain (CCWD) with a minimal error of 3.46ffi. The investigations carried out in this study confirm that the ITF mapping system could effectively map the lightning VHF radiation source. |
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Article |
author |
Alammari, Ammar Alkahtani, Ammar A. Ahmad, Mohd. Riduan Noman, Fuad Mohd. Esa, Mona Riza Mohammad Sabri, Muhammad Haziq Ali Mohammad, Sulaiman Al Khaleefa, Ahmed Salih Kawasaki, Zen Agelidis, Vassilios |
author_facet |
Alammari, Ammar Alkahtani, Ammar A. Ahmad, Mohd. Riduan Noman, Fuad Mohd. Esa, Mona Riza Mohammad Sabri, Muhammad Haziq Ali Mohammad, Sulaiman Al Khaleefa, Ahmed Salih Kawasaki, Zen Agelidis, Vassilios |
author_sort |
Alammari, Ammar |
title |
Kalman Filter and wavelet cross-correlation for VHF broadband interferometer lightning mapping |
title_short |
Kalman Filter and wavelet cross-correlation for VHF broadband interferometer lightning mapping |
title_full |
Kalman Filter and wavelet cross-correlation for VHF broadband interferometer lightning mapping |
title_fullStr |
Kalman Filter and wavelet cross-correlation for VHF broadband interferometer lightning mapping |
title_full_unstemmed |
Kalman Filter and wavelet cross-correlation for VHF broadband interferometer lightning mapping |
title_sort |
kalman filter and wavelet cross-correlation for vhf broadband interferometer lightning mapping |
publisher |
MDPI AG |
publishDate |
2020 |
url |
http://eprints.utm.my/id/eprint/93366/1/MonaRizaMohdEsa2020_KalmanFilterandWaveletCrossCorrelation.pdf http://eprints.utm.my/id/eprint/93366/ http://dx.doi.org/10.3390/app10124238 |
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1718926057619324928 |
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13.211869 |