690 Hausbau, Bauhandwerk
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Micro grids often consist of energy generators, storages and consumers with controllers which are not prepared for their integration into communication networks for energy systems. In this paper it will be presented, how standards from the field of energy automation can be applied in such controllers. The data for communication interfaces can be structured according to the IEC 61850- or the VHPREADY standard. It is investigated which requirements must be supported to implement such data models within the controllers. For the transmission of the data we propose the OPC UA protocol, which supports extensive security measures and which is today available for nearly all modern types of controllers and computers.
The main challenge when driving heat pumps by PV-electricity is balancing differing electrical and thermal demands. In this article, a heuristic method for optimal operation of a heat pump driven by a maximum share of PV-electricity is presented. For this purpose, the (DHW) are activated in order shift the operation of the heat pump to times of PV-generation. The system under consideration refers to thermal and electrical demands of a single family house. It consists of a heat pump, a thermal energy storage for DHW and of grid connected heating and generation of domestic hot water, the heat pump runs with two different supply temperatures and thereby achieving a maximum overall COP. Within the algorithm for optimization a set of heuristic rules is developed in a way that the operational characteristics of the heat pump in terms of minimum running and stopping times are met as well as the limiting constraints of upper and lower limits of room temperature and energy content of electricity generated, a varying number of heat pump schedules fulfilling the bundary conditions are created. Finally, the schedule offering the maximum on-site utilization of PV-electricity with a minimum number of starts of the heat pump, which serves as secondary condition, is selected. Yearly simulations of this combination have been carried out. Initial results of this method indicate a significant rise in on-site consumption of the PV-electricity and heating demand fulfilment by renewable electricity with no need for a massive TES for the heating system in terms of a big water tank.
Ein wirtschaftlicher Betrieb von KWK-Anlagen ist erreichbar, wenn Geräte mit gutem elektrischen Wirkungsgrad und geringen Anschaffungs- und Wartungskosten eingesetzt werden und der im BHKW erzeugte Strom zum größtmöglichen Anteil im Objekt verbraucht wird. Der Pufferspeicher einer KWK-Anlage sollte ausreichend groß bemessen sein (Flexibilität, Eigenstromoptimierung...). Ein größeres BHKW ist nicht automatisch unwirtschaftlicher aufgrund der geringeren Betriebszeit. Es bietet dagegen ein höheres Potenzial für eine bedarfsgerechte Stromeinspeisung in das Netz.