论文标题

微电网能量管理的分层分布式预测控制方法

A hierarchical distributed predictive control approach for microgrids energy management

论文作者

Dao, Le Anh, Dehghani-Pilehvarani, Alireza, Markou, Achilleas, Ferrarini, Luca

论文摘要

本文解决了典型的微电网中的管理和协调能源的问题,包括智能建筑物,即柔性负载,能量储藏和可再生能源。总体目标是提供一个全面而创新的框架,以最大程度地提高整体利益,仍然考虑了更改来自网格的负载配置文件的要求,并让每一个建筑物或用户在为这些请求和满足自己的舒适度水平之间提供平衡。用户参与决策过程是由管理和控制解决方案授予了通过协调的创新分布式模型预测控制方法的管理解决方案。此外,还提出了一个分层结构,以将分布式MPC用户端与微电网控制集成在一起,该控制也通过MPC技术实现。提出的总体方法已在希腊雅典NTUA的分布式能源系统(SMART RUE)的实验室中实施和测试。仿真分析和结果从实施的角度显示了测试,显示了该方法的准确性和潜力。

This paper addresses the problem of management and coordination of energy resources in a typical microgrid, including smart buildings as flexible loads, energy storages, and renewables. The overall goal is to provide a comprehensive and innovative framework to maximize the overall benefit, still accounting for possible requests to change the load profile coming from the grid and leaving every single building or user to balance between servicing those requests and satisfying his own comfort levels. The user involvement in the decision-making process is granted by a management and control solution exploiting an innovative distributed model predictive control approach with coordination. In addition, also a hierarchical structure is proposed, to integrate the distributed MPC user-side with the microgrid control, also implemented with an MPC technique. The proposed overall approach has been implemented and tested in several experiments in the laboratory facility for distributed energy systems (Smart RUE) at NTUA, Athens, Greece. Simulation analysis and results complement the testing, showing the accuracy and the potential of the method, also from the perspective of implementation.

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