Pareto local search for a multi-objective demand response problem in residential areas with heat pumps and electric vehicles
Thomas Dengiz, Andrea Raith, Max Kleinebrahm, Jonathan Vogl, Wolf, Fichtner

TL;DR
This paper introduces PALSS and RELAPALSS, innovative multi-objective optimization methods that improve demand response management in residential areas with heat pumps and electric vehicles, enhancing renewable energy integration.
Contribution
The paper presents novel Pareto local search algorithms incorporating reinforcement learning for multi-objective demand response optimization in residential energy systems.
Findings
PALSS and RELAPALSS outperform existing evolutionary algorithms.
Reinforcement learning enhances the optimization performance.
Methods effectively balance cost, peak load, and comfort.
Abstract
In future energy systems characterized by significant shares of fluctuating renewable energy sources, there is a need for a fundamental change in electricity consumption. The energy system requires the ability to adapt to the intermittent electricity generation of renewable energy sources. This can be achieved by integrating flexible electrical loads, such as electric heating devices and electric vehicles, in combination with efficient control methods. In this paper, we introduce the Pareto local search method PALSS with heuristic search operations to solve the multi-objective optimization problem of a residential area with different types of flexible loads. PALSS shifts the flexible electricity load with the objective of minimizing the electricity cost and peak load while maintaining the inhabitants' comfort in favorable ranges. Further, we include reinforcement learning into the…
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Taxonomy
TopicsSmart Grid Energy Management · Electric Vehicles and Infrastructure · Energy, Environment, and Transportation Policies
