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Cited by 55 publications
(36 citation statements)
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“…It is worth noting that the current loop should be designed to be stable first. Otherwise, the outer voltage loop will have a non-minimum phase response, which cannot be stabilized [23]. Consequently, the current-loop gain is designed to achieve a positive GM.…”
Section: B Dual-loop Controlmentioning
confidence: 99%
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“…It is worth noting that the current loop should be designed to be stable first. Otherwise, the outer voltage loop will have a non-minimum phase response, which cannot be stabilized [23]. Consequently, the current-loop gain is designed to achieve a positive GM.…”
Section: B Dual-loop Controlmentioning
confidence: 99%
“…The vector-voltage control has for long time since been used with uninterruptible power supplies [9], [10], energy storage systems [11], and converter-based micro-grids [12]- [14]. The voltage control schemes based on linear controllers have been extensively studied, which can be classified into two groups, i.e., the single-loop control [15]- [18] and the dual-loop control [19]- [23], in respect to the number of feedback control variables [24]. The single-loop control directly regulates the output voltage across the LCfilter capacitor [18], while the dual-loop control adds an inner feedback loop based on the inductor current [23].…”
Section: Introductionmentioning
confidence: 99%
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“…In Fig. 10, for the VC loop gain, it can be seen that due to the impact of the LC resonance, the bandwidth cannot be designed sufficiently high [46]. Tv1 achieves a gain margin (GM) of 6 dB, with only a limited bandwidth of 57 Hz.…”
Section: ) Voltage Control Impactmentioning
confidence: 99%
“…which behaves as a virtual resistance emulated by the innerloop voltage and current controllers. Following the dual-loop voltage control design guideline [46], K pv is usually designed much small to reduce the impact of the LC resonance on the VC loop gain design, such that KpiKpv << 1 is satisfied. Thus, Fig.…”
Section: ) Voltage Control Impactmentioning
confidence: 99%