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Titlebook: Demand Response in Smart Grids; Pengwei Du,Ning Lu,Haiwang Zhong Book 2019 Springer Nature Switzerland AG 2019 Energy Services.Modeling De

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https://doi.org/10.1007/978-3-658-39259-8rt is transformed to a set of linear constraints. Then, a novel linear-sequential-optimization-enhanced, multi-loop algorithm is used to solve the appliance commitment problem. The simulation results demonstrate that the algorithm is fast, robust, and flexible. The algorithm can be used in home/buil
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Coupon Incentive-Based Demand Response,ysis shows the benefits of the CIDR scheme in terms of social welfare, consumer surplus, LSE profit, the robustness of the retail electricity rate, and readiness for implementation. The pros and cons are discussed in comparison with existing DR programs. Numerical illustration is performed based on
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Distributed Real-Time Demand Response, multipliers during each iteration, which greatly improves the convergence performance of the distributed algorithm. Case studies based on a distribution grid with the number of consumers ranging from 10 to 100 demonstrate that the proposed method greatly outperforms the prevalent approaches, in ter
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https://doi.org/10.1007/978-3-322-87764-2Responsive Reserve Service, Controllable Load Resources participating in Security Constrained Economic Dispatch (SCED) and 10-min and 30-min Emergency Response Service. The performance requirements and the benefits from deployment of these load resources are illustrated through the real-world events.
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