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논문 기본 정보

자료유형
학술저널
저자정보
Myeong-Soo Choi (Gyeongsang National University) Jung-Hoon Lee (Gyeongsang National University)
저널정보
대한전기학회 전기학회논문지 전기학회논문지 제72권 제10호
발행연도
2023.10
수록면
1,208 - 1,220 (13page)
DOI
10.5370/KIEE.2023.72.10.1208

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초록· 키워드

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In this paper, the two sliding surface part transformations are investigated for ITSMC (integral terminal sliding mode control) of second-order uncertain linear plants when the input gain uncertainty of the system is not zero i.e. Δ b ≠ 0 as the further study of [33] and as the alternative methods of [33]. As highlighted in [33], the realm of designing ITSMCs encompasses five distinctive approaches: control input transformation, sliding surface full transformation, and three variations of sliding surface part transformations. While the discussion on the first three methods has been comprehensively covered in [33], this paper centers its focus on the previously unexplored last two transformations. These latter two transformations are presented as novel alternatives to the approaches detailed in [33]. The initial three transformations, as elucidated in [33], demonstrate a performance wherein the real output can be effectively predicted through the utilization of solutions derived from the ideal sliding dynamics. These solutions are thoughtfully pre-designed and predetermined through the application of the ideal sliding dynamics. This paper significantly contributes by presenting a comprehensive exploration of the last two transformation methods, achieving performance on par with the first three transformations described in [33]. These final two sliding surface part transformations stand as noteworthy design methodologies for ITSMCs with the same performance as in [33], offering alternative avenues in contrast to those laid out in [33]. The practical value of our key findings is effectively demonstrated through an illustrative example and an extensive simulation study, thereby underscoring the pertinence and applicability of our research outcomes.

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Abstract
1. Introduction
2. Further Studies of Proof of Utkin“s Theorem for ITSMCs
3. Design Example and Illustrative Simulation Study Consider a second order uncertain canonical system
4. Conclusions
References

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