This thesis develops a new forecast-based charging strategy for an accumulator for photovoltaics, to maximize the autarky level while minimizing the turn-down losses. This is relevant especially for private households. An energy-optimized configuration of storage and PV generator is developed. This is compared with a Smart Home system, which should primary use solar surpluses. The actual environmental sustainability will be focused and compared with the claim and reality in reducing in output of CO2.
Udo Vieth
Autarkiegrad-Optimierung CO2-Budget CO2-Fußabdruck Eigenstromversorgung Energie-Einsparpotentiale Energiewende Energy turnaround Klimawandel Lithium-Ionen-Akkumulator Netzparität anthropogener Treibhauseffekt climate change current self-supply fossil fuel phase-out grid parity