2021
DOI: 10.1016/j.ijepes.2020.106703
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A novel robust adaptive control of parallel energy resources in smart island

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Cited by 4 publications
(2 citation statements)
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“…𝑋 Μ… 𝑖𝑗 (12) ⋇ 𝑋 Μ… 𝑖𝑗 (21) βˆ’4πœ•πœ‘ 2 + 𝑋 Μ… 𝑖𝑗 (22) (28) Proof: In equation ( 9), if 𝑀 πœ… in the equation ( 25) becomes negative as the disturbance is satisfied in the equation (15), the disturbance will reduce to zero, and then 𝑀 πœ… ≀ 0 implies that VOLUME XX, 2020 βˆ†π‘‰(πœ… + 𝑙|πœ…) < 0 after some time instant. Thus, 𝑉(πœ… + 𝑙|πœ…) goes to zero when l= ∞.…”
Section: Gain-scheduled Control Law Designmentioning
confidence: 99%
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“…𝑋 Μ… 𝑖𝑗 (12) ⋇ 𝑋 Μ… 𝑖𝑗 (21) βˆ’4πœ•πœ‘ 2 + 𝑋 Μ… 𝑖𝑗 (22) (28) Proof: In equation ( 9), if 𝑀 πœ… in the equation ( 25) becomes negative as the disturbance is satisfied in the equation (15), the disturbance will reduce to zero, and then 𝑀 πœ… ≀ 0 implies that VOLUME XX, 2020 βˆ†π‘‰(πœ… + 𝑙|πœ…) < 0 after some time instant. Thus, 𝑉(πœ… + 𝑙|πœ…) goes to zero when l= ∞.…”
Section: Gain-scheduled Control Law Designmentioning
confidence: 99%
“…The presented controller can give improved output peak voltage and THD; besides, it can decrease steady-state error in comparison with the classic non-linear controller. To have a better comparison with the suggested controller, details of sliding mode and back stepping controllers are extracted from references [28] and [29] and implemented controllers on the system, which are shown in Figure 4.…”
Section: B Comparison With Other Controllersmentioning
confidence: 99%