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Coordinated energy management in autonomous hybrid AC/DC microgrids

机译:自主混合AC / DC微电网中的协调能源管理

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In most recent years, there is an increasing interest of promoting the proportion of power supply from the renewable energy sources through integrating various forms of small-scale Distributed Generators (DGs) and energy storage units with the capacity ranging from a number of kilowatts to a number of Megawatts, e.g. Fuel cells (FC), Photovoltaic cells (PV), Batteries, micro turbines, to the medium voltage power distribution networks. This is mainly driven by advances in renewable energy technology and the ambition of meeting the target of C02 emissions reduction and the demand of enhancing energy security and quality of supply. Currently the microgrid becomes a new energy provision paradigm to enhance the power supply reliability which has a collection of power loads, micro sources and energy storage systems (ESSs). In addition, the hybrid AC/DC microgrid becomes prevalent which is capable of direct interfacing different forms of renewable sources and loads, and hence eliminates the conventional multiple energy conversions in AC and DC energy systems. Such hybrid microgrid provides a cost-effective energy supply paradigm with significantly reduced operation and maintenance cost. In this paper, we present the modeling and implementation of a simulation test-bed of AC/DC hybrid microgrid system considering the most available distributed generators (e.g. PV, micro turbines), typical storage facilities (e.g. battery) and different forms of power loads (linear and non-linear loads), based on the MATLAB/Simulink tool and investigate the coordinated energy management approach for improving the DG utilization efficiency as well as the power quality under different microgrid operational conditions. The effectiveness and performance of the suggested coordinated energy management approach in the autonomous hybrid AC/DC microgrid is well assessed through carrying out a set of simulation experiments for typical microgrid operational scenarios.
机译:在近年来,通过整合各种形式的小型分布发电机(DGS)和能量存储单元,促进可再生能源的电力供应比例越来越令人利益,其能量存储单元具有从许多千瓦到A的容量兆瓦的数量,例如燃料电池(Fc),光伏电池(PV),电池,微型涡轮机,到中压配电网络。这主要是可再生能源技术的进步和满足C02排放量减少的目标和提高能源安全和供应质量的需求的雄心。目前,MicroGrid成为一种新的能量提供范例,以提高具有电力负载,微源和能量存储系统(ESS)的电源可靠性的电源可靠性。此外,混合AC / DC微电网变得普遍,其能够直接地接地不同形式的可再生源和负载,因此消除了AC和DC能量系统中的传统多能量转化。这种混合微电网提供了经济高效的能量供应范例,其操作和维护成本显着降低。在本文中,考虑到最可用的分布式发电机(例如PV,微涡轮机),典型的存储设施(例如电池)和不同形式的电力负载,介绍AC / DC混合微电网系统的模拟和实施。 (线性和非线性载荷),基于MATLAB / SIMULIND工具,并研究了改进DG利用效率的协调能量管理方法,以及在不同的微电网运行条件下的电力质量。通过对典型的微电网操作场景进行一组模拟实验,通过对典型的微电网运行方案进行一组模拟实验,很好地评估了建议的协调能源管理方法的有效性和性能。

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