A Variable Structure Multiple-Model Estimation Algorithm Aided by Center Scaling
The accuracy for target tracking using a conventional interacting multiple-model algorithm (IMM) is limited. In this paper, a new variable structure of interacting multiple-model (VSIMM) algorithm aided by center scaling (VSIMM-CS) is proposed to solve this problem. The novel VSIMM-CS has two main s...
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| Published in | Electronics (Basel) Vol. 12; no. 10; p. 2257 |
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| Main Authors | , , , , |
| Format | Journal Article |
| Language | English |
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Basel
MDPI AG
16.05.2023
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| ISSN | 2079-9292 2079-9292 |
| DOI | 10.3390/electronics12102257 |
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| Abstract | The accuracy for target tracking using a conventional interacting multiple-model algorithm (IMM) is limited. In this paper, a new variable structure of interacting multiple-model (VSIMM) algorithm aided by center scaling (VSIMM-CS) is proposed to solve this problem. The novel VSIMM-CS has two main steps. Firstly, we estimate the approximate location of the true model. This is aided by the expected-mode augmentation algorithm (EMA), and a new method—namely, the expected model optimization method—is proposed to further enhance the accuracy of EMA. Secondly, we change the original model set to ensure the current true model as the symmetry center of the current model set, and the model set is scaled down by a certain percentage. Considering the symmetry and linearity of the system, the errors produced by symmetrical models can be well offset. Furthermore, narrowing the distance between the true model and the default model is another effective method to reduce the error. The second step is based on two theories: symmetric model set optimization method and proportional reduction optimization method. All proposed theories aim to minimize errors as much as possible, and simulation results highlight the correctness and effectiveness of the proposed methods. |
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| AbstractList | The accuracy for target tracking using a conventional interacting multiple-model algorithm (IMM) is limited. In this paper, a new variable structure of interacting multiple-model (VSIMM) algorithm aided by center scaling (VSIMM-CS) is proposed to solve this problem. The novel VSIMM-CS has two main steps. Firstly, we estimate the approximate location of the true model. This is aided by the expected-mode augmentation algorithm (EMA), and a new method—namely, the expected model optimization method—is proposed to further enhance the accuracy of EMA. Secondly, we change the original model set to ensure the current true model as the symmetry center of the current model set, and the model set is scaled down by a certain percentage. Considering the symmetry and linearity of the system, the errors produced by symmetrical models can be well offset. Furthermore, narrowing the distance between the true model and the default model is another effective method to reduce the error. The second step is based on two theories: symmetric model set optimization method and proportional reduction optimization method. All proposed theories aim to minimize errors as much as possible, and simulation results highlight the correctness and effectiveness of the proposed methods. |
| Audience | Academic |
| Author | Jin, Weitong Sheng, Weixing Wang, Qiang Li, Guowei Zhang, Shurui |
| Author_xml | – sequence: 1 givenname: Qiang surname: Wang fullname: Wang, Qiang – sequence: 2 givenname: Guowei surname: Li fullname: Li, Guowei – sequence: 3 givenname: Weitong surname: Jin fullname: Jin, Weitong – sequence: 4 givenname: Shurui orcidid: 0000-0003-2626-199X surname: Zhang fullname: Zhang, Shurui – sequence: 5 givenname: Weixing surname: Sheng fullname: Sheng, Weixing |
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| SubjectTerms | Accuracy Algorithms Error reduction Estimation theory Liquor Mathematical optimization Methods Optimization Symmetry Tracking Tracking systems |
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