This article presents a mixed-integer linear stochastic model for the optimal expansion planning of electricity distribution networks and distributed generation (DG) units. In the proposed framework, autonomous DG units are aggregated and modeled using the well-known energy hub concept. In this model, the uncertainties of heat and electricity demand as well as renewable generation are represented using various scenarios. Although this is a standard technique to capture the uncertainties, it drastically increases the dimensions of this optimization problem and makes it practically intractable. In order to address this issue, a novel iterative method is developed in this article to enhance the efficiency of the optimization model. The propose...
A new era of cleaner distributed generators, like wind and solar, dispersed along the distribution n...
This paper presents a stochastic scenario-based approach to finding an efficient plan for the electr...
This paper presents a stochastic scenario-based approach to finding an efficient plan for the electr...
The penetration of intermittent Distributed Generation (DG) brought additional uncertainty to the sy...
The penetration of intermittent Distributed Generation (DG) brought additional uncertainty to the sy...
A novel optimization model for network expansionplanning, including distributed generation is propos...
The penetration of intermittent Distributed Generation (DG) brought additional uncertainty to the sy...
The penetration of intermittent Distributed Generation (DG) brought additional uncertainty to the sy...
Publisher Copyright: © 2022Currently, distribution systems are continuously evolving towards modern ...
The increased deployment of distributed generation calls for the coordination and interaction betwee...
The increased deployment of distributed generation calls for the coordination and interaction betwee...
The increased deployment of distributed generation calls for the coordination and interaction betwee...
The increased deployment of distributed generation calls for the coordination and interaction betwee...
The increasing penetration of renewable distributed generation (DG) sources in distribution networks...
A new era of cleaner distributed generators, like wind and solar, dispersed along the distribution n...
A new era of cleaner distributed generators, like wind and solar, dispersed along the distribution n...
This paper presents a stochastic scenario-based approach to finding an efficient plan for the electr...
This paper presents a stochastic scenario-based approach to finding an efficient plan for the electr...
The penetration of intermittent Distributed Generation (DG) brought additional uncertainty to the sy...
The penetration of intermittent Distributed Generation (DG) brought additional uncertainty to the sy...
A novel optimization model for network expansionplanning, including distributed generation is propos...
The penetration of intermittent Distributed Generation (DG) brought additional uncertainty to the sy...
The penetration of intermittent Distributed Generation (DG) brought additional uncertainty to the sy...
Publisher Copyright: © 2022Currently, distribution systems are continuously evolving towards modern ...
The increased deployment of distributed generation calls for the coordination and interaction betwee...
The increased deployment of distributed generation calls for the coordination and interaction betwee...
The increased deployment of distributed generation calls for the coordination and interaction betwee...
The increased deployment of distributed generation calls for the coordination and interaction betwee...
The increasing penetration of renewable distributed generation (DG) sources in distribution networks...
A new era of cleaner distributed generators, like wind and solar, dispersed along the distribution n...
A new era of cleaner distributed generators, like wind and solar, dispersed along the distribution n...
This paper presents a stochastic scenario-based approach to finding an efficient plan for the electr...
This paper presents a stochastic scenario-based approach to finding an efficient plan for the electr...