带有氢燃料电池的自主电力系统的结构方案

Ivan D. Karabadzhak, Victor V. Nikitin
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摘要

背景。最近,人们对减少碳氢化合物燃料燃烧产物排放到大气中的问题以及使用替代能源和可再生能源的兴趣急剧增加。这个问题既与固定能源有关,也与交通能源有关。减少自主交通发电厂一次能源对环境有害影响的方法之一是混合使用,即在使用传统能源(涡轮发电机和柴油发电机)的同时,使用氢能源(燃料电池)。研究目的本研究论证了自主电力系统与基于氢能源的联合发电厂结构的最佳变体。材料和方法。为实现这一目标,对电力系统各要素的参数和特性进行了比较分析,并使用 MATLAB Simulink 软件包对所研究的电力系统中的过程进行建模。自主电力系统的结构有两种选择,即普通交流母线和直流母线。在三种典型运行模式下对这些方案的参数和特性进行了分析,即接通静态负载、直接启动轴上有负载的异步电动机,以及将消费者从柴油发电机电源转移到氢燃料电池电池电源。结果。在所有考虑的模式中,VTE 电池的特点是对负载变化的快速响应和稳定的效率。瞬态过程的性质是非周期或低振荡、快速衰减。就半导体转换器、滤波设备及其总功率的数量而言,具有公共交流总线的自主电力系统结构更为可取。
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Options for the structure of an autonomous electric power system with a battery of hydrogen fuel cells
Background. Recently, interest in the problem of reducing the emissions of hydrocarbon fuel combustion products into the atmosphere and the use of alternative and renewable energy sources has sharply increased. This problem is relevant to both stationary and transport energy. One of the ways to reduce the harmful impact of primary energy sources in autonomous transport power plants on the environment is their hybridization, i.e., use, along with traditional energy sources (turbogenerators and diesel generators), of hydrogen sources of electricity (fuel cell batteries). Aim. This study presents a justification of the optimal variant of the structure of an autonomous electric power system with a combined power plant based on hydrogen sources of electricity. Materials and Methods. To achieve this goal, a comparative analysis of the parameters and characteristics of the power system elements was performed, as well as a method for modeling processes in the power system under study using the MATLAB Simulink package. Two options for the structure of an autonomous electric power system are being considered, namely, a common AC and DC bus. An analysis of the parameters and characteristics of these options was performed for three typical operating modes, namely, turning on a static load, direct starting of an asynchronous motor with a load on the shaft, and transferring consumers from power from a diesel generator to power from a battery of hydrogen fuel cells. Results. In all considered modes, the VTE battery is characterized by a rapid response to load changes and stable efficiency. The nature of transient processes is aperiodic or low oscillatory, rapidly decaying. In terms of the number of semiconductor converters, filtering devices, and their total power, the structure of an autonomous power system with a common AC bus is more preferable.
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