In this thesis an iterative model concept is developed, which optimises the capacity additions and operation of future power plants and storage facilities in systems with an increasing share of fluctuating generation. The task is divided into sub-models; one for the extension of power plants and one for storage additions. Both are realised as linear optimisation problems. An additional model evaluates the reliability of the power system. In an iterative loop, the power plant dispatch influenced by the storage operation and the reliability of the changed system is fed back to the extension models. This novel methodology enables a gradual adaption of the power plant and storage extensions. The minimum capacity of power plants is determined by the required reliability level of the generation system.
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In this thesis an iterative model concept is developed, which optimises the capacity additions and operation of future power plants and storage facilities in systems with an increasing share of fluctuating generation. The task is divided into sub-models; one for the extension of power plants and one for storage additions. Both are realised as linear optimisation problems. An additional model evaluates the reliability of the power system. In an iterative loop, the power plant dispatch influenced...
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