Multi-Source T-S Target Recognition via an Intuitionistic Fuzzy Method
To realize aerial target recognition in a complex environment, we propose a multi-source Takagi–Sugeno (T-S) intuitionistic fuzzy rules method (MTS-IFRM). In the proposed method, to improve the robustness of the training process of the model, the features of the aerial targets are classified as the...
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| Published in: | Remote sensing (Basel, Switzerland) Vol. 15; no. 24; p. 5773 |
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| Main Authors: | , , , |
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| Language: | English |
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01.12.2023
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| ISSN: | 2072-4292, 2072-4292 |
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| Abstract | To realize aerial target recognition in a complex environment, we propose a multi-source Takagi–Sugeno (T-S) intuitionistic fuzzy rules method (MTS-IFRM). In the proposed method, to improve the robustness of the training process of the model, the features of the aerial targets are classified as the input results of the corresponding T-S target recognition model. The intuitionistic fuzzy approach and ridge regression method are used in the consequent identification, which constructs a regression model. To train the premise parameter and reduce the influence of data noise, novel intuitionistic fuzzy C-regression clustering based on dynamic optimization is proposed. Moreover, a modified adaptive weight algorithm is presented to obtain the final outputs, which improves the classification accuracy of the corresponding model. Finally, the experimental results show that the proposed method can effectively recognize the typical aerial targets in error-free and error-prone environments, and that its performance is better than other methods proposed for aerial target recognition. |
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| AbstractList | To realize aerial target recognition in a complex environment, we propose a multi-source Takagi–Sugeno (T-S) intuitionistic fuzzy rules method (MTS-IFRM). In the proposed method, to improve the robustness of the training process of the model, the features of the aerial targets are classified as the input results of the corresponding T-S target recognition model. The intuitionistic fuzzy approach and ridge regression method are used in the consequent identification, which constructs a regression model. To train the premise parameter and reduce the influence of data noise, novel intuitionistic fuzzy C-regression clustering based on dynamic optimization is proposed. Moreover, a modified adaptive weight algorithm is presented to obtain the final outputs, which improves the classification accuracy of the corresponding model. Finally, the experimental results show that the proposed method can effectively recognize the typical aerial targets in error-free and error-prone environments, and that its performance is better than other methods proposed for aerial target recognition. |
| Audience | Academic |
| Author | Zhang, Chuyun Xie, Weixin Li, Yanshan Liu, Zongxiang |
| Author_xml | – sequence: 1 givenname: Chuyun orcidid: 0000-0002-8661-3988 surname: Zhang fullname: Zhang, Chuyun – sequence: 2 givenname: Weixin surname: Xie fullname: Xie, Weixin – sequence: 3 givenname: Yanshan surname: Li fullname: Li, Yanshan – sequence: 4 givenname: Zongxiang orcidid: 0000-0001-8947-7021 surname: Liu fullname: Liu, Zongxiang |
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| SubjectTerms | Accuracy Adaptive algorithms adaptive weight Aerial targets Algorithms Clustering Comparative analysis Decision making Fuzzy algorithms Fuzzy logic Fuzzy sets Fuzzy systems Information sources Methods Parameter identification Probability distribution regression analysis Regression models ridge regression Robustness (mathematics) Sensors T-S intuitionistic fuzzy rules Target acquisition Target recognition |
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