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Article detail · 2019 · conference-paper

Experiment of Sliding Mode Control with Nonlinear Sliding Surface Design for a 3-DOF Helicopter Model

OpenAlex
Year2019
Citations7OpenAlex
Percentile%84.8
FWCI1.751.00 = world average

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Abstract

OpenAlex English

Sliding Mode Control (SMC) is one of the effective robust control techniques against external disturbances, parameter uncertainties and unmodelled dynamics. However, there is no certain way to design the sliding surface (SS) for nonlinear systems, which has a key role in satisfying the stability and performance criteria. Thus, an optimal method can be useful in the design process of SS to deal with these weaknesses. In this study, State Dependent Riccati Equation (SDRE) based SMC is used to control the motion of a laboratory helicopter in two axes, namely travel and elevation axes. Experimental evaluation is performed using this 3-DOF helicopter platform and results are compared against a SMC with linear time-invariant SS to establish the efficacy of the approach. Therefore, this study presents experimental investigation for establishing the feasibility of the proposed optimal robust control architecture.

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Citations

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7citationsOpenAlex · cited_by_count (cache / database)

2 publications in the local catalog that cite this work (OpenAlex reference match; not the full global list).

  1. 2023 Sliding Mode Control of a 3-DOF Helicopter with State Dependent Regional Pole PlacementCitations 2 · OpenAlex
  2. 2023 Sliding Surface Optimization via Regional Pole Placement for a Class of Nonlinear SystemsCitations 2 · OpenAlex

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