The Impact of Charging Plug-In Hybrid Electric Vehicles on a Residential Distribution Grid

Влияние зарядки подключаемых гибридных электромобилей на бытовую распределительную электрическую сеть
Johan Driesen, Kristien Clement-Nyns, Edwin Haesen
2009-12-21

coordinated chargingplug-in hybrid electric vehiclespower lossesresidential distribution gridstochastic programming
Alternative vehicles, such as plug-in hybrid electric vehicles, are becoming more popular. The batteries of these plug-in hybrid electric vehicles are to be charged at home from a standard outlet or on a corporate car park. These extra electrical loads have an impact on the distribution grid which is analyzed in terms of power losses and voltage deviations. Without coordination of the charging, the vehicles are charged instantaneously when they are plugged in or after a fixed start delay. This uncoordinated power consumption on a local scale can lead to grid problems. Therefore, coordinated charging is proposed to minimize the power losses and to maximize the main grid load factor. The optimal charging profile of the plug-in hybrid electric vehicles is computed by minimizing the power losses. As the exact forecasting of household loads is not possible, stochastic programming is introduced. Two main techniques are analyzed: quadratic and dynamic programming.
1
Because household-load forecasting is inherently uncertain, the study introduces stochastic programming and analyzes quadratic and dynamic programming techniques.
2
Coordinated charging is proposed to reduce power losses and improve the main-grid load factor.
3
Optimal vehicle charging profiles are computed by minimizing distribution-grid power losses.
4
Plug-in hybrid electric vehicle charging at homes and corporate parking areas adds electrical loads that affect distribution-grid power losses and voltage deviations.
5
Uncoordinated charging—immediately upon connection or after a fixed delay—can create local distribution-grid problems.

Charging of plug-in hybrid electric vehicles (PHEVs) connected to a residential distribution grid

The impact of uncoordinated and coordinated charging on power losses, voltage deviations, and main-grid load factor

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2009-12-21
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Johan Driesen
Kristien Clement-Nyns
Edwin Haesen
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