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Strategies for Environmental Sustainability of Municipal Energy Companies.
Two trends are emerging from modern electric power systems: the growth of renewable (e.g., solar and wind) generation, and the integration of information technologies and advanced power electronics.
The former introduces large, rapid, and random fluctuations in power supply, demand, frequency, and voltage, which become a major challenge for real-time operation of power systems.
Analysing different technology pathways for the pulp and paper industry in a European energy systems perspective.
Energy efficiency and carbon dioxide mitigation in building stocks.
Demand side management in Swedish industry - an investigation of load management in major Swedish industries.
The impact of wind power variability on the least-cost dispatch of units in the electricity generation system. Modelling Energy Conservation and COcapture and biomass gasification. Pathways of Sustainable Development between Business and Society. Licentiate thesis: Chalmers University of Technology. Integrating Biomass in Existing Natural Gas-Fired Power Plants. Corporate strategies to mitigate climate change- two essays on practices in Swedish energy-intensive companies. Perspectives on future bioenergy use and trade in a European policy context . Reducing Carbon Dioxide Emissions from the EU Power and Industry Sectors - An assessment of key technologies and measures. Modelling energy demand in the buildings sector within the EU. (2) Two-timescale voltage control: The voltage of a power distribution system must be maintained closely around its nominal value in real time, even in the presence of highly volatile power supply or demand.For this purpose, we jointly control two types of reactive power sources: a capacitor operating at a slow timescale, and a power electronic device, such as a smart inverter or a D-STATCOM, operating at a fast timescale.