Title :
Using agent based simulation and model predictive control to study energy consumption behavior under dynamic pricing
Author :
Khadgi, Prajwal ; Lihui Bai ; Evans, Gerald
Author_Institution :
Ind. Eng., Univ. of Louisville, Louisville, KY, USA
Abstract :
In the interest of increasing energy efficiency and avoiding higher generation costs during peak periods, utility companies adopt various demand response (DR) methods to achieve load leveling or peak reduction. DR techniques influence consumer behavior via incentives and cause them to shift peak loads to off-peak periods. In this paper we study the energy consumption behavior of residents in response to a variable real-time pricing function. We consider thermostatic loads, specifically air conditioning, as the primary load and apply the model predictive control (MPC) method to study the behavior of consumers who make consumption decisions based on a trade-off between energy cost and thermal comfort. An agent-based simulation is used to model a population where each household is an agent embedded with the MPC algorithm. Each household is associated with a multi-attribute utility function, and is uniquely defined via the use of stochastic parameters in the utility function.
Keywords :
consumer behaviour; control engineering computing; demand side management; digital simulation; energy conservation; multi-agent systems; power engineering computing; predictive control; pricing; stochastic processes; DR techniques; MPC; agent based simulation; consumer behavior; demand response methods; dynamic pricing; energy consumption behavior; energy efficiency; generation costs; load leveling; model predictive control method; multiattribute utility function; off-peak periods; peak loads; peak reduction; stochastic parameters; thermostatic loads; variable real-time pricing function; Consumer behavior; Electricity; Energy consumption; Load modeling; Mathematical model; Object oriented modeling; Optimization;
Conference_Titel :
Simulation Conference (WSC), 2014 Winter
Conference_Location :
Savanah, GA
Print_ISBN :
978-1-4799-7484-9
DOI :
10.1109/WSC.2014.7019896