克里米亚共和国向可再生能源供电的智能电网过渡

B. Avdeev, A. Vyngra
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引用次数: 0

摘要

这篇论文对克里米亚共和国境内的发电进行了广泛的分析。一个特别的问题是可再生能源(RES)的使用,特别是风能(WPP)和太阳能发电厂(SPP)。确定了共和国目前的发电能力,并显示了目前由克拉斯诺达尔领土能源系统的电力弥补的电力短缺。现代世界发展的一个最重要的特点是,国际社会日益注意能源使用的合理性和效率问题、采用节能技术和寻找可再生能源。2021年,中东和欧洲国家的风能和太阳能发电厂的容量增加了几倍。在印度,可再生能源装机容量已超过1亿瓦。2021年6月至7月,欧盟太阳能发电量达到创纪录的39太瓦时,增长28%。对于大多数欧洲国家来说,可再生能源占总发电量的15%以上。这是因为在主要市场上,可再生能源,特别是太阳能发电,比天然气和柴油发电厂的能源便宜得多。对俄罗斯来说,南部地区和沿海地区是使用wpp和spp的有效地理区域。因此,克里米亚共和国在地理上是发展替代能源的有利地点。确定了SPP和WPP的技术经济特点,详细考虑了目前自身的风能和太阳能发电情况。确定了克里米亚可再生能源的发展方式和允许的能力。根据可再生能源(RES)作为俄罗斯统一能源系统的一部分在其运行期间的监管,控制和保护系统的要求,允许将替代电力与主电网一起使用,其总容量等于该地区最大负载的20%。因此,克里米亚可再生能源的开发和分布具有巨大的潜力。对可再生能源系统集成到整体能源系统中的应用系统进行了研究,并指出了它们的不足。为了克里米亚地区可再生能源的进一步发展,建议采用固态变压器将spp和wpp智能集成到半岛能源系统中的模型。使用电力变压器将电力从可再生能源传输到电网,大大降低了系统的灵活性,消除了对能量参数的控制。为了提高对电网输出功率的控制能力,同时降低电压变换过程中的能源成本,建议在逆变阶段使用固态变压器。SST的使用改变了RES向网络传输电力的一般原理:WPP和SPP电池中积累的直流电压通过高频逆变器馈送到脉冲变压器,在脉冲变压器中上升到电源线的电压。然后将其整流并反转到所需的主频率。现代功率半导体元件可以很好地为将RES集成到电网中提供这样的模型。该模型对能量参数进行了有效控制,具有较高的效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transition to Smart Grids of Power Supply with Renewable Energy Sources in the Republic of Crimea
The paper made an extensive analysis of power generation in the territory of the Republic of Crimea. A special issue is the use of renewable energy sources (RES), in particular wind (WPP) and solar power plants (SPP). The current power generation capacities of the republic are determined and the power deficit is shown, which is currently covered by the electricity of the energy system of the Krasnodar Territory. One of the most important features of the development of the modern world is the increased attention of the world community to the problems of rationality and efficiency in the use of energy resources, the introduction of energy saving technologies and the search for renewable energy sources. In 2021, the countries of the Middle East and Europe increased the capacity of wind and solar power plants several times over. In India, installed renewable energy capacity has exceeded 100 GW. In June-July 2021, solar power generation in the European Union reached a record level and amounted to 39 TWh, an increase of 28%. For most European countries, renewable energy accounts for more than 15% of electricity generation in general. This is due to the fact that in the main markets, renewable, in particular solar electricity, is significantly cheaper than the energy of gas and diesel power plants.For Russia, the southern districts and coastal zones are effective geographical areas for the use of WPPs and SPPs. Thus, the Republic of Crimea is a geographically favorable place for the development of alternative energy.The technical and economic characteristics of SPP and WPP are determined, the current own wind and solar generation is considered in detail. The ways of development and permissible capacities of renewable energy sources in the Crimea are determined. According to the requirements for the systems of regulation, control and protection of renewable energy sources (RES) during their operation as part of the Unified Energy System of Russia, the use of alternative sources of electricity together with the main grid is permissible with their total capacity equal to 20% of the maximum load of the region. Therefore, the development and distribution of renewable energy in the Crimea has a huge potential. The applied systems for integrating RES into the overall energy system are considered, their shortcomings are identified.For the further development of RES in the Crimea, it is proposed to use a model of intelligent integration of SPPs and WPPs into the energy system of the peninsula using solid-state transformers. The use of power transformers for the transmission of electricity from RES to the network significantly reduces the flexibility of the system and eliminates the control of energy parameters. To increase the control capabilities of the output power to the network, as well as to reduce energy costs during voltage transformation, it is proposed to use solid-state transformers (SST) at the inverting stage. The use of SST changes the general principle of power transfer from RES to the network to the following: the DC voltage accumulated in the batteries of WPP and SPP is fed through a high-frequency inverter to a pulse transformer, where it rises to the voltage of the power line. Then it is rectified and inverted to the required mains frequency. Modern power semiconductor components may well provide such a model for integrating RES into the grid. The proposed model is distinguished by the presence of effective control of energy parameters, as well as high efficiency.
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