This book focuses on the interaction between different energy vectors, that is, between electrical, thermal, gas, and transportation systems, with the purpose of optimizing the planning and operation of future energy systems. More and more renewable energy is integrated into the electrical system, and to optimize its usage and ensure that its full production can be hosted and utilized, the power system has to be controlled in a more flexible manner. In order not to overload the electrical distribution grids, the new large loads have to be controlled using demand response, perchance through a hierarchical control set-up where some controls are dependent on price signals from the spot and balancing markets. In addition, by performing local real-time control and coordination based on local voltage or system frequency measurements, the grid hosting limits are not violated.
This book focuses on the interaction between different energy vectors, that is, between electrical, thermal, gas, and transportation systems, with the purpose of optimizing the planning and operation of future energy systems.
This groundbreaking new volume: Focuses on practical applications, new concepts, and design of hybrid renewable energy systems, which will be of more benefit to the researcher, student and engineer Is also useful to consultants, designers, ...
In some of the presented systems, generation is done by conventional power generators like induction, PMSG, and synchronous generators. These are also covered in this comprehensive book.
This book covers advancements of power electronic converters and their control techniques for grid integration of large-scale renewable energy sources and electrical vehicles.
This modeling is the base for more detailed operation strategies for optimal operation of integrated multi-energy systems under uncertainty covered in the latter part of the work.
This books aims to bring together some of the latest research developments as well as thoughts on the future research directions of the high performance computing applications in electric power systems planning, operations, security, ...
(3) Integrated energy and power system with multi-energy complementarities The new-generation power system has evolved along with China's energy transition. It will no longer be an isolated system of power production and consumption, ...
... systems (Stoyanova et al. 2012). Several multi-energy system modelling tools have been developed in the last years, which mostly follow two methodologies. The first type of tools are made for specific studies (for example, integration of ...
The book discusses a panorama of modeling, planning and optimization considerations for IoT technologies, their applications across grid modernization, and the coordinated operation of multi-vector energy grids.
... system based on attribute theory for optimal investment strategy. Energy Procedia 152, 95–100 (2018). https://doi.org/10.1016/j.egypro.2018.09.065 2. Qin, Y.J., et al.: Optimal operation of integrated energy systems ... Power Energy Syst. 6(2) ...