Dynamic analysis of orthogonal apparent power components in polyphase unbalanced networks

A complete characterization of non-active power components is of increasing importance, given the abundance of nonlinear loads and distributed generators in modern power systems. Effective control of power quality can be achieved only when the contribution of imbalance and nonlinearities to non-acti...

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spelling ndltd-NEU--neu-13342021-05-25T05:09:42ZDynamic analysis of orthogonal apparent power components in polyphase unbalanced networksA complete characterization of non-active power components is of increasing importance, given the abundance of nonlinear loads and distributed generators in modern power systems. Effective control of power quality can be achieved only when the contribution of imbalance and nonlinearities to non-active power is clearly understood. Starting with the work of Budeanu, many authors have aimed to characterize the concept of non-active power in the most general case of unbalanced, non-sinusoidal operation. The most detailed work to date appears to be that of Lev-Ari and Stankovic, who introduced a decomposition of apparent power consisting of seven components. This steady-state decomposition generalizes and refines the 5-component decomposition of Czarnecki, as well as those introduced earlier by Sharon and by Shepherd & Zakikhani.http://hdl.handle.net/2047/d20002869
collection NDLTD
sources NDLTD
description A complete characterization of non-active power components is of increasing importance, given the abundance of nonlinear loads and distributed generators in modern power systems. Effective control of power quality can be achieved only when the contribution of imbalance and nonlinearities to non-active power is clearly understood. Starting with the work of Budeanu, many authors have aimed to characterize the concept of non-active power in the most general case of unbalanced, non-sinusoidal operation. The most detailed work to date appears to be that of Lev-Ari and Stankovic, who introduced a decomposition of apparent power consisting of seven components. This steady-state decomposition generalizes and refines the 5-component decomposition of Czarnecki, as well as those introduced earlier by Sharon and by Shepherd & Zakikhani.
title Dynamic analysis of orthogonal apparent power components in polyphase unbalanced networks
spellingShingle Dynamic analysis of orthogonal apparent power components in polyphase unbalanced networks
title_short Dynamic analysis of orthogonal apparent power components in polyphase unbalanced networks
title_full Dynamic analysis of orthogonal apparent power components in polyphase unbalanced networks
title_fullStr Dynamic analysis of orthogonal apparent power components in polyphase unbalanced networks
title_full_unstemmed Dynamic analysis of orthogonal apparent power components in polyphase unbalanced networks
title_sort dynamic analysis of orthogonal apparent power components in polyphase unbalanced networks
publishDate
url http://hdl.handle.net/2047/d20002869
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