Research on allocation and economy of energy storage demonstration projects in Shandong Province | IEEE Conference Publication | IEEE Xplore

Research on allocation and economy of energy storage demonstration projects in Shandong Province


Abstract:

To achieve the goal of carbon peak in 2030 and carbon neutral in 2060, one of the main tasks of China’s energy transformation is to build a new type of power system with ...Show More

Abstract:

To achieve the goal of carbon peak in 2030 and carbon neutral in 2060, one of the main tasks of China’s energy transformation is to build a new type of power system with renewable energy as the main body. For meeting the great challenge of the rapid development of renewable energy to the balance of power system, energy storage power station has been further developed. According to the policy requirements of energy storage power station demonstration project in Shandong Province, the typical models of new photovoltaic power generation supporting energy storage power station, thermal power generation unit supporting energy storage power station and grid side independent energy storage power station are established, and the profit model of the system is analyzed in detail. The results show that when the equivalent utilization hours of photovoltaic power station in Shandong exceed 1178 hours, the income of photovoltaic power station has the space to build the lease of energy storage power station. The self-built energy storage system of the photovoltaic power station will lead to an average decrease of about 3% in the IRR of the system capital fund, which is equivalent to the income consequence caused by the price of 254~310 yuan/kW of the leased energy storage power station. Thermal power plants build peak shaving power stations with electric energy storage, and the benefits mainly include peak shaving subsidies for energy storage power stations, sharing and leasing incomes for photovoltaic power stations, and marginal contribution of priority generation of thermal power plants. This type of energy storage power station has good benefits, and the IRR of project capital varies from 16.85% to 21.14%. When the annual rental price of the photovoltaic power station exceeds 165 yuan/kW, the IRR of the capital fund of the energy storage power station shall not be less than 10%. The income of grid side independent energy storage power station mainly includes peak shaving subsi...
Date of Conference: 23-25 December 2021
Date Added to IEEE Xplore: 24 March 2022
ISBN Information:
Conference Location: Nanjing, China

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I. Introduction

By the end of 2020, the total installed capacity of power generation of China has reached 2.2 × 109 kW, the total installed capacity of non-fossil energy power generation is 9.8 × 108 kW, the total installed capacity of renewable energy power generation is 9.34 × 108 kW, the total installed capacity of wind power generation and photovoltaic power generation accounts for 24.3%. China’s energy structure transformation has achieved phased results of the 13th Five Year Plan period. To achieve the goal of “ carbon peaking “ by 2030 and “ carbon neutralization “ by 2060, the power system needs to build a new power system with renewable energy as the main body, which will further increase the development of renewable energy, and thus pose a major challenge to the balance of China’s power system[1–2], so the energy storage power station has a further rapid development opportunity. At present, the total installed capacity of power generation of Shandong Province is 1.59 × 108 kW, of which the installed capacity of photovoltaic power generation is 2.27 × 107 kW. It is arduous to absorb renewable energy power in spring and autumn, and there is a big gap between peak load in summer. Shandong power grid has a strong demand for peak load regulation and supply to guarantee resources. The energy storage system can effectively improve the power grid renewable energy consumption capacity, peak to load, valley load reduction, and power supply guarantee capacity in an emergency state[3–6], and can cooperate with thermal power units for frequency regulation[7–8]. Recently, Shandong Province has issued the “Implementation Opinions on developing energy storage demonstration application”[9], which provides clear support for the demonstration project of energy storage power station. Under this background, this paper makes a detailed analysis on the configuration and economy of the Shandong regional energy storage power station demonstration project, which guides Shandong Province demonstration project application and other regional energy storage power station construction.

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1.
T. Guangyi, "Construction of smart energy system based on dual Carbon goal", Smart Power, vol. 49, pp. 1-6, 2021.
2.
T. Xiandong, L. Jun, X. Zhicheng et al., "Power supply and demand balance duering the 14th Five-Year plan period under the goal of Carbon emission peak and Carbon neutrality", Electric Power, vol. 54, pp. 1-6, 2021.
3.
P. Shanpeng and Z. Chunping, "Research of energy storage demand and province class policy in Shandong electric power system in a setting of high proportion renewable energy", Thermal Power Generation, vol. 49, pp. 29-35, 2020.
4.
X. Xingxuan, X. Minpeng and Y. Jiahai, "Economy analysis of energy storage system in wind farm generation side", Smart Power, vol. 48, pp. 16-22, 2020.
5.
Z. Baofeng, T. Bo, F. Yangmin et al., "Application analysis of electrochemical energy storage technology in new energy power generation side", Thermal Power Generation, vol. 49, pp. 13-18, 8 2020.
6.
L. Jianlin, L. Yaxin and Z. Xichao, "Summary of research on grid-side energy storage technology", Electric Power Construction, vol. 41, pp. 77-84, 2020.
7.
X. Zhijia, L. Deixin, W. Jiarui et al., "Application scenarios and control method research of energy storage system participating in power system frequency modulation", Thermal Power Generation, vol. 49, pp. 117-125, 2020.
8.
M. Chunhua, W. Pengyue, S. Ganghu et al., "AGC frequency modulation technology and application for combination of thermal power unit and energy storage system", Thermal Power Generation, vol. 47, pp. 29-34, 2018.
9.
Opinions on the implementation of demonstration application of energy storage, 04 2021.
10.
X. Deqiang, W. Xin and W. Xintang, "Solar energy resource characteristics of Photovoltaic power station in Shandong Province", Agricultural Science & Technology, vol. 14, pp. 666-671, 2013.

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