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This book is motivated by mitigating the impact of the penetration of Electric vehicle on the power supplier. It sequentially proposes three distributed frameworks for demand dispatch in smart grid networks. The overall goal is to properly shift plug-in hybrid electric vehicle (PHEV) demand to fill the grid demand valley and at the same time minimise the user inconvenience. The final design does not require any price negotiation, thus instead, the aggregator sets the optimal price directly, leading to very fast response and accurate demand dispatch for flat valley-filling. And the price is…mehr

Produktbeschreibung
This book is motivated by mitigating the impact of the penetration of Electric vehicle on the power supplier. It sequentially proposes three distributed frameworks for demand dispatch in smart grid networks. The overall goal is to properly shift plug-in hybrid electric vehicle (PHEV) demand to fill the grid demand valley and at the same time minimise the user inconvenience. The final design does not require any price negotiation, thus instead, the aggregator sets the optimal price directly, leading to very fast response and accurate demand dispatch for flat valley-filling. And the price is controllable by the scaling factor. However, all those features are achieved by requiring all the connected PHEVs to uploading their willingness-to-pay (WTP) parameters.
Autorenporträt
Chang Liu started his PhD investigation into 'Visual control strategies for small remotely piloted aircraft (RPA) operations in GPS denied environments' at the University of Southampton in October 2013. Before that, he obtained a Masters Degree in Artificial Intelligence from the same University in 2012.