M.E. Kootte
9 records found
1
Integrated electrical power flow simulations are concerned with solving the steady-state load flow problem on integrated transmission and distribution electricity networks. We have developed a framework to run these simulations efficiently, whilst keeping in mind the differences
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Fluctuating electricity prices offer potential economic savings for the consumption of electricity by flexible assets such as Electric Vehicles (EVs). This study proposes an operational bidding framework that minimizes the charging costs of an EV fleet by submitting an optimized
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Power system simulations should be adapted to be applicable to the trends that are currently evoked by the energy transition. This transition is pushing our power system from a traditional hierarchical system to a modern interactive system. In order to keep the supply and transpo
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Power flow computations are important for operation and planning of the electricity grid, but are computationally expensive because of nonlinearities and the size of the system of equations. Linearized methods reduce computational time but often have the disadvantage that they ar
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Steady-State Stand-Alone Power Flow Solvers for Integrated Transmission-Distribution Networks
A Comparison Study and Numerical Assessment
This paper compares and assesses several numerical methods that solve the steady-state power flow problem on integrated transmission-distribution networks. The integrated network model consists of a balanced transmission and an unbalanced distribution network. It is important to
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An integrated network consists of a transmission network and at least one distribution network which are connected to each other via a substation. One way to do power flow simulations on these integrated networks is the Master-Slave splitting method. This method splits the integr
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Power ow simulations
form an essential tool for electricity network analysis but conventional models
are designed to work on a separated transmission or distribution network only.
The continuing growth of electricity consumption, demand side participation,
and renewable resources
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Load flow computations for (integrated) Transmission and Distribution systems
A literature review
Electrical
power systems are complex systems and traditionally modeled in two separate
systems. Power is generated at the transmission system and at several
substations converted to the distribution systems. The increasing amount of
generation produced at distribution level can e
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Solving the Steady-State Power Flow Problem on Integrated Transmission-Distribution Networks
A Comparison of Numerical Methods
Steady-state power flow models are essential for daily operation of the electricity grid. The changing electrical environment requires a shift from separated power flow models to integrated transmission-distribution power flow models. Integrated models incorporate the coupling of
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