Static compensator thesis
From: Daniel M.
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Abstract- The power system industry is a field where there are constant changes occurs. Economic and environmental pressures force electric companies to enhance the power transfer capability of the existing transmission lines instead of constructing new ones. Besides allowing a better utilization of existing power systems capacity, FACTS controllers can control network parameters, such as magnitude of sending-end and receiving-end voltage, and active-reactive power, to improve both the transient stability performance of the system. In thesis work describe the Static synchronous series compensator device, that controls the power flow of the transmission line during sever disturbances.
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Simulation of Distribution Static Compensator (D-STATCOM) to Improve Power Quality
Simulation of Distribution Static Compensator (D-STATCOM) to Improve Power Quality | SpringerLink
Download this complete Project material titled; Three-Level Inverter-Based Static Var Compensator with abstract, chapters , references, and questionnaire. Preview Abstract or chapter one below. Thus, the blocking voltage of each switching device in three-level inverter is one half of dc-link voltage, whereas it is full dc-link voltage for two-level inverter. The harmonics content of three-level inverter output voltage is far less than that of the two-level inverter at the same switching frequency. The three-level inverter can therefore be operated at lower switching frequency without excessive harmonic content.
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Three-Level Inverter-Based Static Var Compensator
The reason for the focus on SWER lines is the high cost of upgrading them in the traditional way to solve voltage regulation problems that result from load growth in some of the feeders. These include their location, reactive power circulation, reactive power prioritising, four quadrant operation and the timing of installation and operation. From one of those expressions it was deduced that, on a voltage increment per kVAr basis, DSTATCOMs are most effective as voltage regulators when they are installed at the customer terminals rather than further upstream into the network. This result has been found to apply generally to all practical SWER lines. Load flow studies revealed that in general this stability limit exists for all practical SWER lines.
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