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A Multi-Agent-Based Optimization Model for Microgrid Operation Using Dynamic Guiding Chaotic Search Particle Swarm Optimization

机译:一种基于多代理的微电网操作优化模型,用于使用动态指导混沌搜索粒子群优化的微电网运行

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摘要

The optimal operation of microgrids is a comprehensive and complex energy utilization and management problem. In order to guarantee the efficient and economic operation of microgrids, a three-layer multi-agent system including distributed management system agent, microgrid central control agent and microgrid control element agent is proposed considering energy storage units and demand response. Then, based on this multi-agent system and with the objective of cost minimization, an operation optimization model for microgrids is constructed from three aspects: operation cost, environmental impact and security. To solve this model, dynamic guiding chaotic search particle swarm optimization is adopted and three scenarios including basic scenario, energy storage participation and demand response participation are simulated and analyzed. The results show that both energy storage unit and demand response can effectively reduce the cost of microgrid, improve the operation and management level and ensure the safety and stability of power supply and utilization.
机译:微电网的最佳运行是全面而复杂的能量利用和管理问题。为了保证微电网的高效和经济运行,考虑能量储存单元和需求响应,提出了一种三层多剂体系,包括分布式管理系统代理,微电网中央控制剂和微电网控制元件。然后,基于该多功能系统和最小化的目的,微电网的操作优化模型由三个方面构建:运营成本,环境影响和安全性。为了解决这一模型,采用动态引导混沌搜索粒子群优化,并模拟了三种场景,包括基本场景,能量存储参与和需求响应参与。结果表明,储能单元和需求响应都能有效地降低微电网的成本,提高操作和管理水平,并确保供电和利用的安全性和稳定性。

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