DocumentCode :
86810
Title :
Uncertainty-Aware Household Appliance Scheduling Considering Dynamic Electricity Pricing in Smart Home
Author :
Xiaodao Chen ; Tongquan Wei ; Shiyan Hu
Author_Institution :
ECE Dept., Michigan Technol. Univ., Houghton, MI, USA
Volume :
4
Issue :
2
fYear :
2013
fDate :
Jun-13
Firstpage :
932
Lastpage :
941
Abstract :
High quality demand side management has become indispensable in the smart grid infrastructure for enhanced energy reduction and system control. In this paper, a new demand side management technique, namely, a new energy efficient scheduling algorithm, is proposed to arrange the household appliances for operation such that the monetary expense of a customer is minimized based on the time-varying pricing model. The proposed algorithm takes into account the uncertainties in household appliance operation time and intermittent renewable generation. Moreover, it considers the variable frequency drive and capacity-limited energy storage. Our technique first uses the linear programming to efficiently compute a deterministic scheduling solution without considering uncertainties. To handle the uncertainties in household appliance operation time and energy consumption, a stochastic scheduling technique, which involves an energy consumption adaptation variable , is used to model the stochastic energy consumption patterns for various household appliances. To handle the intermittent behavior of the energy generated from the renewable resources, the offline static operation schedule is adapted to the runtime dynamic scheduling considering variations in renewable energy. The simulation results demonstrate the effectiveness of our approach. Compared to a traditional scheduling scheme which models typical household appliance operations in the traditional home scenario, the proposed deterministic linear programming based scheduling scheme achieves up to 45% monetary expense reduction, and the proposed stochastic design scheme achieves up to 41% monetary expense reduction. Compared to a worst case design where an appliance is assumed to consume the maximum amount of energy, the proposed stochastic design which considers the stochastic energy consumption patterns achieves up to 24% monetary expense reduction without violating the target trip rate of 0.5%. Furthermore, the proposed ener- y consumption scheduling algorithm can always generate the scheduling solution within 10 seconds, which is fast enough for household appliance applications.
Keywords :
demand side management; domestic appliances; energy conservation; energy consumption; energy storage; linear programming; power generation economics; power generation scheduling; power system management; pricing; smart power grids; stochastic programming; variable speed drives; capacity-limited energy storage; customer monetary expense; deterministic linear programming; dynamic electricity pricing; energy consumption; energy efficient scheduling algorithm; energy reduction enhancement; high quality demand side management; intermittent renewable resource generation; offline static operation scheduling; smart grid infrastructure; smart home; stochastic scheduling technique; system control; time 10 s; time-varying pricing model; uncertainty-aware household appliance scheduling; variable frequency drive; Batteries; Energy consumption; Home appliances; Pricing; Schedules; Scheduling; Stochastic processes; Smart home; stochastic scheduling;
fLanguage :
English
Journal_Title :
Smart Grid, IEEE Transactions on
Publisher :
ieee
ISSN :
1949-3053
Type :
jour
DOI :
10.1109/TSG.2012.2226065
Filename :
6476768
Link To Document :
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