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Erschienen in: Artificial Intelligence Review 3/2020

01.06.2019

Enhanced leader particle swarm optimisation (ELPSO): a new algorithm for optimal scheduling of home appliances in demand response programs

verfasst von: Ahmad Rezaee Jordehi

Erschienen in: Artificial Intelligence Review | Ausgabe 3/2020

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Abstract

Smart grids enable the residential consumers to have an active role in the management of their electricity consumption through home energy management (HEM) systems. HEM systems adjust the ON–OFF status and/or operation modes of home appliances under demand response programs, typically in a way that the electricity bill of the home is minimised and/or the peak load is minimised. This represents a constrained multi-objective optimisation problem with integer decision variables. The existing methodologies for optimal scheduling of home appliances have two drawbacks; most of them have not taken the consumers’ comfort into account and also powerful optimisation algorithms have not been used for solving this problem. In this paper, the problem of optimal scheduling of home appliances in HEM systems is formulated as a constrained, multi-objective optimisation problem with integer decision variables and a powerful variant of particle swarm optimisation, named as enhanced leader particle swarm optimisation (ELPSO) is proposed for solving this problem. Optimal scheduling of appliances is done for ten different scenarios that consider different demand response programs. The problem is solved for two different smart homes respectively with 10 and 11 appliances, both including electric vehicle as a big residential load. The results indicate the superiority of ELPSO over basic PSO, artificial bee colony, backtracking search algorithm, gravitational search algorithm and dragonfly algorithm. In the proposed multi-objective formulation, the effect of weight factor on optimal electricity bill of the home and optimal comfort of the consumers is meticulously investigated.

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Literatur
Zurück zum Zitat Agnetis A, de Pascale G, Detti P, Vicino A (2013) Load scheduling for household energy consumption optimization. IEEE Trans Smart Grid 4:2364–2373CrossRef Agnetis A, de Pascale G, Detti P, Vicino A (2013) Load scheduling for household energy consumption optimization. IEEE Trans Smart Grid 4:2364–2373CrossRef
Zurück zum Zitat Alowaifeer M, Alamri A, Meliopoulos AS (2018) Reliability and cost impacts of home energy management systems. In: 2018 IEEE international conference on probabilistic methods applied to power systems (PMAPS), IEEE, pp 1–6 Alowaifeer M, Alamri A, Meliopoulos AS (2018) Reliability and cost impacts of home energy management systems. In: 2018 IEEE international conference on probabilistic methods applied to power systems (PMAPS), IEEE, pp 1–6
Zurück zum Zitat Asare-Bediako B, Kling W, Ribeiro P (2012) Home energy management systems: evolution, trends and frameworks. In: Universities power engineering conference (UPEC), 2012 47th international, IEEE, pp 1–5 Asare-Bediako B, Kling W, Ribeiro P (2012) Home energy management systems: evolution, trends and frameworks. In: Universities power engineering conference (UPEC), 2012 47th international, IEEE, pp 1–5
Zurück zum Zitat Civicioglu P (2013) Backtracking search optimization algorithm for numerical optimization problems. Appl Math Comput 219:8121–8144MathSciNetMATH Civicioglu P (2013) Backtracking search optimization algorithm for numerical optimization problems. Appl Math Comput 219:8121–8144MathSciNetMATH
Zurück zum Zitat González-Briones A, De La Prieta F, Mohamad M, Omatu S, Corchado J (2018a) Multi-agent systems applications in energy optimization problems: a state-of-the-art review. Energies 11:1928CrossRef González-Briones A, De La Prieta F, Mohamad M, Omatu S, Corchado J (2018a) Multi-agent systems applications in energy optimization problems: a state-of-the-art review. Energies 11:1928CrossRef
Zurück zum Zitat González-Briones A, Prieto J, De La Prieta F, Herrera-Viedma E, Corchado JM (2018b) Energy optimization using a case-based reasoning strategy. Sensors 18:865CrossRef González-Briones A, Prieto J, De La Prieta F, Herrera-Viedma E, Corchado JM (2018b) Energy optimization using a case-based reasoning strategy. Sensors 18:865CrossRef
Zurück zum Zitat Huang Y, Wang L, Guo W, Kang Q, Wu Q (2016) Chance constrained optimization in a home energy management system. IEEE Trans Smart Grid 9:252–260CrossRef Huang Y, Wang L, Guo W, Kang Q, Wu Q (2016) Chance constrained optimization in a home energy management system. IEEE Trans Smart Grid 9:252–260CrossRef
Zurück zum Zitat Jordehi AR (2015) Enhanced leader PSO (ELPSO): a new PSO variant for solving global optimisation problems. Appl Soft Comput 26:401–417CrossRef Jordehi AR (2015) Enhanced leader PSO (ELPSO): a new PSO variant for solving global optimisation problems. Appl Soft Comput 26:401–417CrossRef
Zurück zum Zitat Jordehi AR (2018) Enhanced leader particle swarm optimisation (ELPSO): an efficient algorithm for parameter estimation of photovoltaic (PV) cells and modules. Sol Energy 159:78–87CrossRef Jordehi AR (2018) Enhanced leader particle swarm optimisation (ELPSO): an efficient algorithm for parameter estimation of photovoltaic (PV) cells and modules. Sol Energy 159:78–87CrossRef
Zurück zum Zitat Jordehi AR (2019a) Optimisation of demand response in electric power systems, a review. Renew Sustain Energy Rev 103:308–319CrossRef Jordehi AR (2019a) Optimisation of demand response in electric power systems, a review. Renew Sustain Energy Rev 103:308–319CrossRef
Zurück zum Zitat Jordehi AR (2019b) Binary particle swarm optimisation with quadratic transfer function: A new binary optimisation algorithm for optimal scheduling of appliances in smart homes. Appl Soft Comput 78:465–480CrossRef Jordehi AR (2019b) Binary particle swarm optimisation with quadratic transfer function: A new binary optimisation algorithm for optimal scheduling of appliances in smart homes. Appl Soft Comput 78:465–480CrossRef
Zurück zum Zitat Jordehi AR, Jasni J (2013) Parameter selection in particle swarm optimisation: a survey. J Exp Theor Artif Intell 25:527–542CrossRef Jordehi AR, Jasni J (2013) Parameter selection in particle swarm optimisation: a survey. J Exp Theor Artif Intell 25:527–542CrossRef
Zurück zum Zitat Jordehi AR, Jasni J, Abd Wahab N, Kadir MZ, Javadi MS (2015) Enhanced leader PSO (ELPSO): a new algorithm for allocating distributed TCSC’s in power systems. Int J Electr Power Energy Syst 64:771–784CrossRef Jordehi AR, Jasni J, Abd Wahab N, Kadir MZ, Javadi MS (2015) Enhanced leader PSO (ELPSO): a new algorithm for allocating distributed TCSC’s in power systems. Int J Electr Power Energy Syst 64:771–784CrossRef
Zurück zum Zitat Karaboga D, Basturk B (2007) A powerful and efficient algorithm for numerical function optimization: artificial bee colony (ABC) algorithm. J Global Optim 39:459–471MathSciNetCrossRef Karaboga D, Basturk B (2007) A powerful and efficient algorithm for numerical function optimization: artificial bee colony (ABC) algorithm. J Global Optim 39:459–471MathSciNetCrossRef
Zurück zum Zitat Khemakhem S, Rekik M, Krichen L (2019) Double layer home energy supervision strategies based on demand response and plug-in electric vehicle control for flattening power load curves in a smart grid. Energy 167:312–324CrossRef Khemakhem S, Rekik M, Krichen L (2019) Double layer home energy supervision strategies based on demand response and plug-in electric vehicle control for flattening power load curves in a smart grid. Energy 167:312–324CrossRef
Zurück zum Zitat Ma K, Hu S, Yang J, Xu X, Guan X (2018) Appliances scheduling via cooperative multi-swarm PSO under day-ahead prices and photovoltaic generation. Appl Soft Comput 62:504–513CrossRef Ma K, Hu S, Yang J, Xu X, Guan X (2018) Appliances scheduling via cooperative multi-swarm PSO under day-ahead prices and photovoltaic generation. Appl Soft Comput 62:504–513CrossRef
Zurück zum Zitat Mehrjerdi H, Bornapour M, Hemmati R, Ghiasi SMS (2019) Unified energy management and load control in building equipped with wind-solar-battery incorporating electric and hydrogen vehicles under both connected to the grid and islanding modes. Energy 168:919–930CrossRef Mehrjerdi H, Bornapour M, Hemmati R, Ghiasi SMS (2019) Unified energy management and load control in building equipped with wind-solar-battery incorporating electric and hydrogen vehicles under both connected to the grid and islanding modes. Energy 168:919–930CrossRef
Zurück zum Zitat Mirjalili S (2016) Dragonfly algorithm: a new meta-heuristic optimization technique for solving single-objective, discrete, and multi-objective problems. Neural Comput & Applic 27:1053–1073CrossRef Mirjalili S (2016) Dragonfly algorithm: a new meta-heuristic optimization technique for solving single-objective, discrete, and multi-objective problems. Neural Comput & Applic 27:1053–1073CrossRef
Zurück zum Zitat Mohsenian-Rad A-H, Leon-Garcia A (2010) Optimal residential load control with price prediction in real-time electricity pricing environments. IEEE Trans Smart Grid 1:120–133CrossRef Mohsenian-Rad A-H, Leon-Garcia A (2010) Optimal residential load control with price prediction in real-time electricity pricing environments. IEEE Trans Smart Grid 1:120–133CrossRef
Zurück zum Zitat Rashedi E, Nezamabadi-Pour H, Saryazdi S (2009) GSA: a gravitational search algorithm. Inf Sci 179:2232–2248CrossRef Rashedi E, Nezamabadi-Pour H, Saryazdi S (2009) GSA: a gravitational search algorithm. Inf Sci 179:2232–2248CrossRef
Zurück zum Zitat Setlhaolo D, Xia X (2015) Optimal scheduling of household appliances with a battery storage system and coordination. Energy Build 94:61–70CrossRef Setlhaolo D, Xia X (2015) Optimal scheduling of household appliances with a battery storage system and coordination. Energy Build 94:61–70CrossRef
Zurück zum Zitat Setlhaolo D, Xia X, Zhang J (2014) Optimal scheduling of household appliances for demand response. Electr Power Syst Res 116:24–28CrossRef Setlhaolo D, Xia X, Zhang J (2014) Optimal scheduling of household appliances for demand response. Electr Power Syst Res 116:24–28CrossRef
Zurück zum Zitat Shakeri M, Shayestegan M, Reza SS, Yahya I, Bais B, Akhtaruzzaman M, Sopian K, Amin N (2018) Implementation of a novel home energy management system (HEMS) architecture with solar photovoltaic system as supplementary source. Renew Energy 125:108–120CrossRef Shakeri M, Shayestegan M, Reza SS, Yahya I, Bais B, Akhtaruzzaman M, Sopian K, Amin N (2018) Implementation of a novel home energy management system (HEMS) architecture with solar photovoltaic system as supplementary source. Renew Energy 125:108–120CrossRef
Zurück zum Zitat Sharifi AH, Maghouli P (2018) Energy management of smart homes equipped with energy storage systems considering the PAR index based on real-time pricing. Sustain Cities Soc 45:579–587CrossRef Sharifi AH, Maghouli P (2018) Energy management of smart homes equipped with energy storage systems considering the PAR index based on real-time pricing. Sustain Cities Soc 45:579–587CrossRef
Zurück zum Zitat Shi Y, Eberhart R (1998) A modified particle swarm optimizer. In: The 1998 IEEE international conference on evolutionary computation proceedings, 1998. IEEE world congress on computational intelligence, IEEE, pp 69–73 Shi Y, Eberhart R (1998) A modified particle swarm optimizer. In: The 1998 IEEE international conference on evolutionary computation proceedings, 1998. IEEE world congress on computational intelligence, IEEE, pp 69–73
Zurück zum Zitat Shokri Gazafroudi A, Soares J, Fotouhi Ghazvini MA, Pinto T, Vale Z, Corchado JM (2019) Stochastic interval-based optimal offering model for residential energy management systems by household owners. Int J Electr Power Energy Syst 105:201–219CrossRef Shokri Gazafroudi A, Soares J, Fotouhi Ghazvini MA, Pinto T, Vale Z, Corchado JM (2019) Stochastic interval-based optimal offering model for residential energy management systems by household owners. Int J Electr Power Energy Syst 105:201–219CrossRef
Zurück zum Zitat Widén J (2014) Improved photovoltaic self-consumption with appliance scheduling in 200 single-family buildings. Appl Energy 126:199–212CrossRef Widén J (2014) Improved photovoltaic self-consumption with appliance scheduling in 200 single-family buildings. Appl Energy 126:199–212CrossRef
Zurück zum Zitat Yao E, Samadi P, Wong VW, Schober R (2016) Residential demand side management under high penetration of rooftop photovoltaic units. IEEE Trans Smart Grid 7:1597–1608CrossRef Yao E, Samadi P, Wong VW, Schober R (2016) Residential demand side management under high penetration of rooftop photovoltaic units. IEEE Trans Smart Grid 7:1597–1608CrossRef
Zurück zum Zitat Zhang D, Shah N, Papageorgiou LG (2013) Efficient energy consumption and operation management in a smart building with microgrid. Energy Convers Manag 74:209–222CrossRef Zhang D, Shah N, Papageorgiou LG (2013) Efficient energy consumption and operation management in a smart building with microgrid. Energy Convers Manag 74:209–222CrossRef
Zurück zum Zitat Zhu J, Lin Y, Lei W, Liu Y, Tao M (2019) Optimal household appliances scheduling of multiple smart homes using an improved cooperative algorithm. Energy 171:944–955CrossRef Zhu J, Lin Y, Lei W, Liu Y, Tao M (2019) Optimal household appliances scheduling of multiple smart homes using an improved cooperative algorithm. Energy 171:944–955CrossRef
Metadaten
Titel
Enhanced leader particle swarm optimisation (ELPSO): a new algorithm for optimal scheduling of home appliances in demand response programs
verfasst von
Ahmad Rezaee Jordehi
Publikationsdatum
01.06.2019
Verlag
Springer Netherlands
Erschienen in
Artificial Intelligence Review / Ausgabe 3/2020
Print ISSN: 0269-2821
Elektronische ISSN: 1573-7462
DOI
https://doi.org/10.1007/s10462-019-09726-3

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