Design and Control of Solid State Transformer for DC Micro Grid Applications
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Abstract
newlineNowadays, the concept of a DC micro-grid has gained special attention due to the
newlineproliferation of power electronic-controlled loads and the integration of renewable
newlineenergy sources (RESs). In DC micro-grid, there is no requirements of synchronization
newlineas in the AC network, no conflicts with the frequency and harmonics, and no concerns
newlineabout reactive power management. Further, the DC microgrid is used to supply electric
newlinepower with RES in off-grid locations without producing greenhouse gases. Moreover,
newlinethe use of an energy storage system (ESS) in the DC micro-grid improves the
newlinereliability of the system as well. Primarily, the DC micro-grid is operated in two
newlinedifferent modes: i.e. islanded mode and grid-connected mode. These modes of
newlineoperation mainly depend on the integration of RESs to reduce the carbon footprint in
newlinethe environment. Hence, multi-stage power electronic converters (MPECs) are
newlinerequired to have a smooth transition between these two modes. The various structure
newlineof MPECs are employed at different locations in the DC micro-grid network depending
newlineon the use and ease of implementation. Further, it requires a reliable control system to
newlinemodulate the power flow between various components in the DC micro-grid network.
newlineThus, in view of the structural and control aspects required for the MPECs, and
newlineinterlinks with the various components of the DC micro-grid network, this thesis
newlinepresents the proposed MPECs, termed as Solid-State-Transformer (SST) for the DC
newlinemicro-grid applications. Basically, the SST is the multistage power electronic
newlineconverters, which links with the high frequency transformer. It can provide various
newlineessential structural and control features required in the DC micro-grid applications.
newlineHence, in the recent years, an enormous research efforts have made in the design and
newlinedevelopment of SST to make it as a centralized element in the DC micro-grid network.
newlineHowever, literature study in the area of SST reveals that the structure of topologies
newlineemployed at either stage of the SST is having signi