A Game Theoretic Horizon Decomposition Approach for Real-Time Demand-Side Management

被引:5
作者
Mishra, Mrityunjay Kumar [1 ]
Parida, S. K. [1 ]
机构
[1] Indian Inst Technol Patna, Dept Elect Engn, Patna 801106, Bihar, India
关键词
Home appliances; Real-time systems; Schedules; Couplings; Aggregates; Prediction algorithms; Games; Demand-side management; game theory; distributed horizon proximal decomposition algorithm; distributed storage and generation; smart grid; DISTRIBUTED ENERGY GENERATION; STORAGE; OPTIMIZATION; ALGORITHM;
D O I
10.1109/TSG.2022.3173786
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
This article introduces two instances of rolling horizon algorithms, viz, shrinking horizon proximal decomposition algorithm (SHPDA) and distributed horizon proximal decomposition algorithm (DHPDA), to solve the demand-side management problem in real time. Both these algorithms are comprised of "two-step". The number of time-slots to be considered in each iteration is decided in first step. In second step, the solution for considered time-slots is obtained through a non-cooperative game-theoretic approach using the proximal decomposition algorithm (PDA). An investigation is carried out to establish the existence and multiplicity of Nash equilibrium for the formulated game. The convergence of PDA has a strong dependency on system parameters and is unique for a system. Hence an analysis is performed to derive the convergence criteria for the formulated problem. The system model includes distributed energy storage, distributed dispatchable generation, time-shiftable, power-shiftable (PSD), and essential devices. The reduction in power consumption of PSD caused due to the optimization process creates discomfort to users. Therefore, we have incorporated an objective to minimize the discomfort and reduce consumers' energy bills. Simulation is carried out to show the efficacy of developed algorithms in terms of the energy bill, peak reduction, and solution time. Also, eight scenarios have been analyzed to show the impact of adding discomfort cost on the above-mentioned system parameters.
引用
收藏
页码:3532 / 3545
页数:14
相关论文
共 50 条
[41]   Demand-Side Management in an Indian Village [J].
Bhongade S. ;
Dawar R.S. ;
Sisodiya S.L. .
Journal of The Institution of Engineers (India): Series B, 2022, 103 (01) :63-71
[42]   A Stackelberg game-theoretic approach to optimal real-time pricing for the smart grid [J].
Meng, Fan-Lin ;
Zeng, Xiao-Jun .
SOFT COMPUTING, 2013, 17 (12) :2365-2380
[43]   A Real-time Demand-side Management System Considering User Behavior Using Deep Q-Learning in Home Area Network [J].
Tai, Chia-Shing ;
Hong, Jheng-Huang ;
Fu, Li-Chen .
2019 IEEE INTERNATIONAL CONFERENCE ON SYSTEMS, MAN AND CYBERNETICS (SMC), 2019, :4050-4055
[44]   A FRAMEWORK FOR DEMAND-SIDE MANAGEMENT WITH DEMAND RESPONSE INPUT [J].
Peinado-Guerrero, Miguel A. ;
Campbell, Nicolas A. ;
Villalobos, Jesus R. ;
Phelan, Patrick E. .
PROCEEDINGS OF THE ASME 2020 POWER CONFERENCE (POWER2020), 2020,
[45]   Real-Time Demand Side Management for a Microgrid Considering Uncertainties [J].
Yang, Xiaodong ;
Zhang, Youbing ;
He, Haibo ;
Ren, Shuaijie ;
Weng, Guoqing .
IEEE TRANSACTIONS ON SMART GRID, 2019, 10 (03) :3401-3414
[46]   Application Conditions of Bounded Rationality and a Microgrid Energy Management Control Strategy Combining Real-Time Power Price and Demand-Side Response [J].
Wu, Nan ;
Wang, Honglei ;
Yin, Linfei ;
Yuan, Xufeng ;
Leng, Xiaoxia .
IEEE ACCESS, 2020, 8 :227327-227339
[47]   Demand-side management strategy in stand-alone hybrid photovoltaic systems with real-time simulation of stochastic electricity consumption behavior [J].
Thiaux, Yael ;
Thu Thuy Dang ;
Schmerber, Louis ;
Multon, Bernard ;
Ahmed, Hamid Ben ;
Bacha, Seddik ;
Quoc Tuan Tran .
APPLIED ENERGY, 2019, 253
[48]   Demand-side energy management under time-varying prices [J].
Liang, Yong ;
Deng, Tianhu ;
Shen, Zuo-Jun Max .
IISE TRANSACTIONS, 2019, 51 (04) :422-436
[49]   A genetic algorithm for real-time demand side management in smart-microgrids [J].
Venticinque, Salvatore ;
Diodati, Massimiliano .
INTERNATIONAL JOURNAL OF COMPUTATIONAL SCIENCE AND ENGINEERING, 2022, 25 (01) :91-104
[50]   Game-Theoretic Demand Side Management of Thermostatically Controlled Loads for Smoothing Tie-Line Power of Microgrids [J].
Ding, Yi ;
Xie, Dunjian ;
Hui, Hongxun ;
Xu, Yan ;
Siano, Pierluigi .
IEEE TRANSACTIONS ON POWER SYSTEMS, 2021, 36 (05) :4089-4101