分析改变太阳能发电厂发电量的方法

Andriy Khomiak, Viktor Rozen
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 Background. The increase in the share of solar electricity generation in the energy systems of the countries of the world leads to the need to control and manage the process of electricity production to increase the stability and sustainability of the energy system. A significant price for compensation of imbalances in the energy system is included in the tariffs, which affects the end consumers of electricity.
 Objective: increasing the adequacy of the results of the distribution of deficit frequency containment reserves, frequency restoration reserves to compensate for imbalances that arise when generation is changed at solar power plants. Reducing the cost of compensation for imbalances that occur when changing generation at solar power plants. To solve the goal, it is necessary to analyze the existing methods of compensating power system imbalances that arise as a result of changes in generation at solar power plants and to propose a new technical and mathematical solution for the distribution of deficit reserves of support and frequency restoration.
 Methods: the social engineering approach of forecasting and modeling was used to analyze the processes affecting the method of controlling the generation schedule of the solar power plant.
 Results. A new mathematical and technical solution for compensating the imbalance in the power system in the event of a rapid change in the electricity generation schedule at solar power plants is proposed. For the first time, the given task was solved using a new technical and mathematical solution. Such a technical and mathematical solution can be widely used in the management of the electricity generation schedule at solar power plants in many system operators in different countries of the world, where there is a problem of insufficient for frequency containment and restoration reserves, and the amount of solar electricity generation has a significant share in the total amount of electricity generation energy.
 Conclusions. Existing methods of compensating power system imbalances arising as a result of changes in generation at solar power plants are analyzed and a new technical and mathematical solution for the distribution of deficit reserves of frequency containment reserves and frequency restoration reserves is proposed. The proposed technical and mathematical solution makes it possible to predict an event during which there will be a change in the level of electric energy generation at solar power plants, to transmit information to the central regulator of the energy system, which in turn will give a command to change the schedule of electric energy generation in advance within the insensitivity zone, which will lead to the activation of the frequency restoration reserves and will allow to compensate the existing imbalance at the expense of cheaper reserves and not to activate the frequency containment reserves. Such a mathematical and technical solution will make it possible to significantly increase the stability of the energy system against emerging imbalances and make their compensation cheaper, which in general has a positive effect on the energy security of the state.","PeriodicalId":472481,"journal":{"name":"Energetika. Ekonomìka, tehnologìï, ekologìâ","volume":"74 S3","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2023-11-07","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"ANALYSIS OF METHODS OF CHANGING VOLUMES OF ELECTRICITY GENERATION AT SOLAR POWER PLANTS\",\"authors\":\"Andriy Khomiak, Viktor Rozen\",\"doi\":\"10.20535/1813-5420.3.2023.289652\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"The article examines the methods of changing electricity generation schedules at solar power plants when operating under the central regulator of the power system. An analysis of the existing regulation methods was carried out, and a new method of controlling the generation of solar power plants under the central regulator of the power system was proposed.
 Background. The increase in the share of solar electricity generation in the energy systems of the countries of the world leads to the need to control and manage the process of electricity production to increase the stability and sustainability of the energy system. A significant price for compensation of imbalances in the energy system is included in the tariffs, which affects the end consumers of electricity.
 Objective: increasing the adequacy of the results of the distribution of deficit frequency containment reserves, frequency restoration reserves to compensate for imbalances that arise when generation is changed at solar power plants. Reducing the cost of compensation for imbalances that occur when changing generation at solar power plants. To solve the goal, it is necessary to analyze the existing methods of compensating power system imbalances that arise as a result of changes in generation at solar power plants and to propose a new technical and mathematical solution for the distribution of deficit reserves of support and frequency restoration.
 Methods: the social engineering approach of forecasting and modeling was used to analyze the processes affecting the method of controlling the generation schedule of the solar power plant.
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引用次数: 0

摘要

本文探讨了太阳能发电厂在电力系统中央调节器下运行时改变发电计划的方法。对现有的调节方法进行了分析,提出了一种由电力系统中央调节器控制太阳能电站发电的新方法。 背景。太阳能发电在世界各国能源系统中所占份额的增加导致需要控制和管理电力生产过程,以增加能源系统的稳定性和可持续性。补偿能源系统不平衡的重要价格包含在关税中,这影响到电力的最终消费者。目标:增加亏频控制储备和频率恢复储备分配结果的充分性,以补偿太阳能发电厂改变发电时产生的不平衡。减少对太阳能发电厂改变发电方式时产生的不平衡的补偿成本。为了实现这一目标,有必要对现有的太阳能电站发电变化引起的电力系统不平衡补偿方法进行分析,并提出一种新的支持和频率恢复赤字储备分配的技术和数学解决方案。 方法:采用预测和建模的社会工程方法,对影响太阳能电站发电计划控制方法的过程进行分析。结果。提出了一种新的数学和技术解决方案,用于补偿太阳能发电厂发电计划快速变化时电力系统的不平衡。这是第一次使用新的技术和数学方法来解决给定的任务。这种技术和数学解决方案可广泛应用于世界上许多国家的系统运营商的太阳能发电厂发电计划管理中,这些系统运营商存在频率遏制和恢复储备不足的问题,太阳能发电量在发电总量中占有很大的份额。 结论。分析了现有的太阳能电站发电变化引起的电力系统不平衡补偿方法,提出了一种新的频率控制储备和频率恢复储备亏缺储备分配的技术和数学方法。所提出的技术和数学解决方案使预测太阳能发电厂发电水平变化的事件成为可能,并将信息传递给能源系统的中央调节器,由中央调节器发出命令,提前改变不敏感区域内的发电计划。这将导致频率恢复储备的激活,并允许以更便宜的储备为代价补偿现有的不平衡,而不是激活频率遏制储备。这样的数学和技术解决方案将有可能显著提高能源系统的稳定性,以应对新出现的失衡,并使其补偿成本更低,这通常对国家的能源安全产生积极影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ANALYSIS OF METHODS OF CHANGING VOLUMES OF ELECTRICITY GENERATION AT SOLAR POWER PLANTS
The article examines the methods of changing electricity generation schedules at solar power plants when operating under the central regulator of the power system. An analysis of the existing regulation methods was carried out, and a new method of controlling the generation of solar power plants under the central regulator of the power system was proposed. Background. The increase in the share of solar electricity generation in the energy systems of the countries of the world leads to the need to control and manage the process of electricity production to increase the stability and sustainability of the energy system. A significant price for compensation of imbalances in the energy system is included in the tariffs, which affects the end consumers of electricity. Objective: increasing the adequacy of the results of the distribution of deficit frequency containment reserves, frequency restoration reserves to compensate for imbalances that arise when generation is changed at solar power plants. Reducing the cost of compensation for imbalances that occur when changing generation at solar power plants. To solve the goal, it is necessary to analyze the existing methods of compensating power system imbalances that arise as a result of changes in generation at solar power plants and to propose a new technical and mathematical solution for the distribution of deficit reserves of support and frequency restoration. Methods: the social engineering approach of forecasting and modeling was used to analyze the processes affecting the method of controlling the generation schedule of the solar power plant. Results. A new mathematical and technical solution for compensating the imbalance in the power system in the event of a rapid change in the electricity generation schedule at solar power plants is proposed. For the first time, the given task was solved using a new technical and mathematical solution. Such a technical and mathematical solution can be widely used in the management of the electricity generation schedule at solar power plants in many system operators in different countries of the world, where there is a problem of insufficient for frequency containment and restoration reserves, and the amount of solar electricity generation has a significant share in the total amount of electricity generation energy. Conclusions. Existing methods of compensating power system imbalances arising as a result of changes in generation at solar power plants are analyzed and a new technical and mathematical solution for the distribution of deficit reserves of frequency containment reserves and frequency restoration reserves is proposed. The proposed technical and mathematical solution makes it possible to predict an event during which there will be a change in the level of electric energy generation at solar power plants, to transmit information to the central regulator of the energy system, which in turn will give a command to change the schedule of electric energy generation in advance within the insensitivity zone, which will lead to the activation of the frequency restoration reserves and will allow to compensate the existing imbalance at the expense of cheaper reserves and not to activate the frequency containment reserves. Such a mathematical and technical solution will make it possible to significantly increase the stability of the energy system against emerging imbalances and make their compensation cheaper, which in general has a positive effect on the energy security of the state.
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