Improvement of Performance Analysis of Amplitude-Comparison Monopulse Algorithm in the Presence of an Additive Noise
In this paper, it is shown how the performance of the monopulse algorithm in the presence of an additive noise can be obtained analytically. In a previous study, analytic performance analysis based on the first-order Taylor series and the second-order Taylor series was conducted. By adopting the thi...
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MDPI AG
2021
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oai:doaj.org-article:38327d7382234c75a3b848b848680cf82021-11-11T15:39:12ZImprovement of Performance Analysis of Amplitude-Comparison Monopulse Algorithm in the Presence of an Additive Noise10.3390/electronics102126492079-9292https://doaj.org/article/38327d7382234c75a3b848b848680cf82021-10-01T00:00:00Zhttps://www.mdpi.com/2079-9292/10/21/2649https://doaj.org/toc/2079-9292In this paper, it is shown how the performance of the monopulse algorithm in the presence of an additive noise can be obtained analytically. In a previous study, analytic performance analysis based on the first-order Taylor series and the second-order Taylor series was conducted. By adopting the third-order Taylor series, it is shown that the analytic performance based on the third-order Taylor series can be brought closer to the performance of the original monopulse algorithm than the analytic performance based on the first-order Taylor series and the second-order Taylor series.Hyeong-Woo HamJoon-Ho LeeMDPI AGarticletracking radaramplitude-comparison monopulsemean square error (MSE)Taylor expansionapproximationElectronicsTK7800-8360ENElectronics, Vol 10, Iss 2649, p 2649 (2021) |
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tracking radar amplitude-comparison monopulse mean square error (MSE) Taylor expansion approximation Electronics TK7800-8360 |
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tracking radar amplitude-comparison monopulse mean square error (MSE) Taylor expansion approximation Electronics TK7800-8360 Hyeong-Woo Ham Joon-Ho Lee Improvement of Performance Analysis of Amplitude-Comparison Monopulse Algorithm in the Presence of an Additive Noise |
description |
In this paper, it is shown how the performance of the monopulse algorithm in the presence of an additive noise can be obtained analytically. In a previous study, analytic performance analysis based on the first-order Taylor series and the second-order Taylor series was conducted. By adopting the third-order Taylor series, it is shown that the analytic performance based on the third-order Taylor series can be brought closer to the performance of the original monopulse algorithm than the analytic performance based on the first-order Taylor series and the second-order Taylor series. |
format |
article |
author |
Hyeong-Woo Ham Joon-Ho Lee |
author_facet |
Hyeong-Woo Ham Joon-Ho Lee |
author_sort |
Hyeong-Woo Ham |
title |
Improvement of Performance Analysis of Amplitude-Comparison Monopulse Algorithm in the Presence of an Additive Noise |
title_short |
Improvement of Performance Analysis of Amplitude-Comparison Monopulse Algorithm in the Presence of an Additive Noise |
title_full |
Improvement of Performance Analysis of Amplitude-Comparison Monopulse Algorithm in the Presence of an Additive Noise |
title_fullStr |
Improvement of Performance Analysis of Amplitude-Comparison Monopulse Algorithm in the Presence of an Additive Noise |
title_full_unstemmed |
Improvement of Performance Analysis of Amplitude-Comparison Monopulse Algorithm in the Presence of an Additive Noise |
title_sort |
improvement of performance analysis of amplitude-comparison monopulse algorithm in the presence of an additive noise |
publisher |
MDPI AG |
publishDate |
2021 |
url |
https://doaj.org/article/38327d7382234c75a3b848b848680cf8 |
work_keys_str_mv |
AT hyeongwooham improvementofperformanceanalysisofamplitudecomparisonmonopulsealgorithminthepresenceofanadditivenoise AT joonholee improvementofperformanceanalysisofamplitudecomparisonmonopulsealgorithminthepresenceofanadditivenoise |
_version_ |
1718434658795913216 |