A State Flow based-Power Management of Hybrid Photo Voltaic / Fuel Cell- Electrolyzer / Battery Power System Connected to Distribution Network

Mohammadali Esmaeili, A. Hajizadeh, A. Fereidunian
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引用次数: 1

Abstract

This paper presents a state-flow based power management method in a hybrid power system including some Renewable Energy Sources (RESs) connected to the distribution network. Photo Voltaic (PV) is the main energy resource, battery, and Fuel Cell (FC)-Electrolyzer are the priory ad secondary energy storage respectively. In addition, Electrolyzer uses a Hydrogen Tank to store the produced Hydrogen (H2). This produced H2 used by FC. These RESs, work together and affect on each other, so different possible states to cover properly different loads in a 24 hours interval regarded. This hybrid system is first analyzed economically in Hybrid Optimization Model for Electric Renewable (HOMER), then modeled in Simulink/MATLAB.
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并网光伏/燃料电池-电解槽/蓄电池混合动力系统的状态流电源管理
提出了一种基于状态流的可再生能源并网混合电力系统的电力管理方法。光伏(PV)是主要的能源,电池和燃料电池(FC)-电解槽分别是一级和二级储能。此外,电解槽使用一个氢罐来储存产生的氢气(H2)。这产生了被FC利用的H2。这些RESs,一起工作,相互影响,所以不同的可能状态,以适当地覆盖不同的负载在24小时的间隔考虑。首先在可再生电力混合优化模型(HOMER)中对该混合动力系统进行了经济性分析,然后在Simulink/MATLAB中进行了建模。
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