Dynamic demand-side management with user's privacy concern in residential community

In smart grids, demand-side management (DSM) plays an important role between customers and utility company, since it can reduce the total electricity cost of each customer meanwhile alleviate the aggregate peak-to-average ratio (PAR) of utility of a community of customers subject to real-time pricin...

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Vydané v:IEEE International Conference on Automation Science and Engineering (CASE) s. 1094 - 1099
Hlavní autori: Hsin-Hui Kuo, Pradhan, Sipun Kr, Chao-Lin Wu, Pei-Hsuan Cheng, Yifei Xie, Li-Chen Fu
Médium: Konferenčný príspevok..
Jazyk:English
Vydavateľské údaje: IEEE 01.08.2016
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ISSN:2161-8089
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Abstract In smart grids, demand-side management (DSM) plays an important role between customers and utility company, since it can reduce the total electricity cost of each customer meanwhile alleviate the aggregate peak-to-average ratio (PAR) of utility of a community of customers subject to real-time pricing (RTP) policy. Moreover, a good DSM system should also be able to react quickly when users do not take its advice or when the environment state changes. This works aims at making the DSM system dynamic, which means that the proposed DSM can reschedule the order of activities in nearly real-time whenever original schedule is no longer feasible due to the aforementioned situations. In our problem formulation, each home is assumed to connect to a renewable energy resource, say, photovoltaic (PV) system, and equipped with an energy storage device so that the scheduling can be made more flexible. Thus, besides the case where the original recommended schedule is not followed by the user, another case where the solar power distribution changes from what was predicted also initiates the rescheduling under the dynamic DSM. In addition, for a residential community composed of multiple homes, keeping the privacy of lifestyle for each home is also an issue as important as the energy saving, and therefore a cooperative game is also formulated so as to transfer only the necessary information but hide all the details of power consumption of each home. The simulation results show that the proposed DSM system not only reduce the cost in individual home but also reschedule quickly whenever there is a need, while make a tradeoff between cost and PAR with privacy concern in a residential community.
AbstractList In smart grids, demand-side management (DSM) plays an important role between customers and utility company, since it can reduce the total electricity cost of each customer meanwhile alleviate the aggregate peak-to-average ratio (PAR) of utility of a community of customers subject to real-time pricing (RTP) policy. Moreover, a good DSM system should also be able to react quickly when users do not take its advice or when the environment state changes. This works aims at making the DSM system dynamic, which means that the proposed DSM can reschedule the order of activities in nearly real-time whenever original schedule is no longer feasible due to the aforementioned situations. In our problem formulation, each home is assumed to connect to a renewable energy resource, say, photovoltaic (PV) system, and equipped with an energy storage device so that the scheduling can be made more flexible. Thus, besides the case where the original recommended schedule is not followed by the user, another case where the solar power distribution changes from what was predicted also initiates the rescheduling under the dynamic DSM. In addition, for a residential community composed of multiple homes, keeping the privacy of lifestyle for each home is also an issue as important as the energy saving, and therefore a cooperative game is also formulated so as to transfer only the necessary information but hide all the details of power consumption of each home. The simulation results show that the proposed DSM system not only reduce the cost in individual home but also reschedule quickly whenever there is a need, while make a tradeoff between cost and PAR with privacy concern in a residential community.
Author Hsin-Hui Kuo
Chao-Lin Wu
Pei-Hsuan Cheng
Yifei Xie
Pradhan, Sipun Kr
Li-Chen Fu
Author_xml – sequence: 1
  surname: Hsin-Hui Kuo
  fullname: Hsin-Hui Kuo
  organization: Dept. of Comput. Sci. & Inf. Eng., Nat. Taiwan Univ., Taipei, Taiwan
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  givenname: Sipun Kr
  surname: Pradhan
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  organization: Dept. of Comput. Sci. & Inf. Eng., Nat. Taiwan Univ., Taipei, Taiwan
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  surname: Chao-Lin Wu
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  surname: Pei-Hsuan Cheng
  fullname: Pei-Hsuan Cheng
  organization: Dept. of Comput. Sci. & Inf. Eng., Nat. Taiwan Univ., Taipei, Taiwan
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  surname: Yifei Xie
  fullname: Yifei Xie
  organization: Dept. of Comput. Sci. & Inf. Eng., Nat. Taiwan Univ., Taipei, Taiwan
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  surname: Li-Chen Fu
  fullname: Li-Chen Fu
  email: lichen@ntu.edu.tw
  organization: Dept. of Comput. Sci. & Inf. Eng., Nat. Taiwan Univ., Taipei, Taiwan
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Snippet In smart grids, demand-side management (DSM) plays an important role between customers and utility company, since it can reduce the total electricity cost of...
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StartPage 1094
SubjectTerms Companies
Demand-side management
dynamic algorithm
Heuristic algorithms
Home appliances
multi-objective optimization
Peak to average power ratio
Power demand
Privacy
Schedules
smart grid
user privacy
Title Dynamic demand-side management with user's privacy concern in residential community
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