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Titlebook: Cooperative Optimal Control of Hybrid Energy Systems; Dong Yue,Huifeng Zhang,Chunxia Dou Book 2021 The Editor(s) (if applicable) and The A

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Multiagent System-Based Event-Triggered Hybrid Controls for High-Security Hybrid Energy Generation S high security. First, a multiagent system is constituted by an upper level central coordinated control agent combined with several lower level unit agents. Each lower level unit agent is responsible for dealing with internal switching control and distributed dynamic regulation for its unit system.
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Multi-agent Based Hierarchical Hybrid Control for Smart Microgridironmental benefits. A control scheme called as multi-agent based hierarchical hybrid control is proposed versus the hierarchical control requirements and hybrid dynamic behaviors of the microgrid. The control scheme is composed of an upper level energy management agent, several middle level coordin
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Two-Stage Optimal Operation Strategy of Isolated Power System with TSK Fuzzy Identification of Supplses a two-stage optimal operation strategy with a Takagi–Sugeno–Kang (TSK) fuzzy system to address the supply-security under uncertainty circumstance. For proper analysis of the uncertainty characteristics, adjustable uncertainty parameters of intermittent energy resource and system load are taken a
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Probabilistic PBI Approach for Risk-Based Optimal Operation of Hybrid Energy Systemschapter proposes a probabilistic multiobjective evolutionary algorithm based on decomposition (MOEA/D) method with two-step risk-based decision-making strategy to tackle this problem. A scenario-based technique is first utilized to generate a stochastic model of the hybrid energy system. Those scena
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Gradient Decent Based Multi-objective Optimization for Economic Emission of Hybrid Energy Systemsx, stochastic and complex-coupled constrained characteristics. This chapter extends short-term hydrothermal system optimal model into short-term hydrothermal optimal scheduling of economic emission while considering integrated intermittent energy resources (SHOSEE-IIER). For properly solving SHOSEE-
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Two-Layered Optimization Strategy for Hybrid Energy Systems with Price Bidding Based Demand Responseof hybrid energy system. This chapter proposes an event-triggered multi-agent coordinated optimization strategy with two-layered architecture. Firstly, price-bidding based DR model is proposed with different stakeholders, and it also deduces optimal bidding price with Nash equilibrium theory. Then,
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Multiagent System-Based Integrated Design of Security Control and Economic Dispatch for Interconnecth (ED) of the microgrids. To bypass these hurdles, this chapter proposes a multiagent system-based integrated design of security control and ED to guarantee the effective and economical operation of the interconnected microgrids. First, a hierarchical control scheme is constructed by two-level unit
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