Efficient Desynchronization of Thermostatically Controlled Loads

Jan Dimon Bendtsen, Srinivas Sridharan

Publikation: Bidrag til bog/antologi/rapport/konference proceedingKonferenceartikel i proceedingForskningpeer review

5 Citationer (Scopus)
494 Downloads (Pure)

Abstract

This paper considers demand side management in smart power grid systems containing significant numbers of thermostatically controlled loads such as air conditioning systems, heat pumps, etc. Recent studies have shown that the overall power consumption of such systems can be regulated up and down centrally by broadcasting small setpoint change commands without significantly impacting consumer comfort. However, sudden simultaneous setpoint changes induce undesirable power consumption oscillations due to sudden synchronization of the on/off cycles of the individual units. In this paper, we present a novel algorithm for counter-acting these unwanted oscillations, which requires neither central management of the individual units nor communication between units. We present a formal proof of convergence of homogeneous populations to desynchronized status, as well as simulations that indicate that the algorithm is able to effectively dampen power consumption oscillations for both homogeneous and heterogeneous populations of thermostatically controlled loads.
OriginalsprogEngelsk
Titel11th IFAC International Workshop on Adaptation and Learning in Control and Signal Processing
Antal sider6
Publikationsdato3 jul. 2013
Sider245-250
DOI
StatusUdgivet - 3 jul. 2013
Begivenhed11th IFAC International Workshop on Adaptation and Learning in Control and Signal Processing - Caen, Frankrig
Varighed: 3 jul. 20135 jul. 2013

Konference

Konference11th IFAC International Workshop on Adaptation and Learning in Control and Signal Processing
Land/OmrådeFrankrig
ByCaen
Periode03/07/201305/07/2013
NavnI F A C Workshop Series
Nummer1
Vol/bind11
ISSN1474-6670

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