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In order to achieve an efficient local control, some papers proposed to use partition methods for voltage regulation [18, 19, 20].

Using instantaneous positive sequence components, five novel extended methods for voltage sag source location are proposed for accommodating the transient nature of voltage sag events and for improving unsuitable operation of methods on asymmetrical sags and earth faults.

In this paper, a comprehensive review on methods for voltage sag source location is presented and also nine generalized methods using positive sequence phasors, instantaneous positive sequence components, Clarke's components and integration are introduced.

Open image in new window Fig. 5 Improved HHT analysis results of voltage sag signal Table 1 Results of two methods for voltage sag Analysis method Error rate of amplitude Error rate of frequency Time consuming (s) Improved HHT combining artificial neural network and mirror extension 1.23 0.71 0.1037 Improved HHT with adaptive waveform matching extension 2.21 2.21 0.0450.

Table 4 Results of two methods for voltage flicker Analysis method Error rate of amplitude Error rate of frequency Time consuming (s) Improved HHT combining artificial neural network and mirror extension 2.30 2.64 0.1016 Improved HHT with adaptive waveform matching extension 1.10 2.1.10.0532.

In order to detect the low and high expressing cells the voltage for the FACS detector was set to detect and display both low EGFP and high EGFP signals at the expense of keeping the negative cells on the Y-axis (see Materials and Methods for voltage settings).

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A global parameter method for voltage drop estimation in distribution system is proposed in [13].

In this paper, a new method for voltage sag and swell detection and segmentation, based on Independent Component Analysis, is presented.

This paper proposes the use of an optimization method for voltage regulation, focused on reactive power injection control, based on a communication architecture model that coordinates the interaction among the inverters of DGPV units.

This paper presents a systematic approach to compare different methods for characterizing voltage dips in a quantitative way.

Among of all changing condition's methods for reducing voltage, dropping off the spinning distance is regarded as the most effective way, and then adding additional conditions (e.g., magnetic field force) to decrease the electric filed also was reported by Yang et al. [29].

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