Advanced Techniques for Voltage Profile Improvement in Power Grid

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Supporting the grid and improving its reliability have recently become major requirements for large distributed generation units. Under most grid faults the accuracy of the traditional voltage support schemes (VSSs) is dramatically affected due to the existence of the zero-sequence voltage. Also the traditional VSSs have been used only in the STATCOM applications where the active power is zero. This paper proposes an advanced VSS in the converter-interfaced units called zero-sequence compensated voltage support (ZCVS) to accurately regulate the three-phase voltages of the connection point within the pre-set safety limits. The proposed scheme not only compensates the zero-sequence component but also considers the active power injection. Unlike the traditional methods the proposed VSS is adapted even in resistive distribution systems. The contribution of this paper is however ternate. As the second contribution the limited active power oscillation (LAPO) is proposed to be augmented to the ZCVS. This feature limits the oscillation to a specified value which provides an adjustable dc-link voltage oscillation setting while simultaneously supporting the ac host grid.Supporting the grid and improving its reliability have recently become major requirements for large distributed generation units. Under most grid faults the accuracy of the traditional voltage support schemes (VSSs) is dramatically affected due to the existence of the zero-sequence voltage. Also the traditional VSSs have been used only in the STATCOM applications where the active power is zero. This paper proposes an advanced VSS in the converter-interfaced units called zero-sequence compensated voltage support (ZCVS) to accurately regulate the three-phase voltages of the connection point within the pre-set safety limits. The proposed scheme not only compensates the zero-sequence component but also considers the active power injection. Unlike the traditional methods the proposed VSS is adapted even in resistive distribution systems. The contribution of this paper is however ternate. As the second contribution the limited active power oscillation (LAPO) is proposed to be augmented to the ZCVS. This feature limits the oscillation to a specified value which provides an adjustable dc-link voltage oscillation setting while simultaneously supporting the ac host grid.
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