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上网侧分时电价政策下平单轴跟踪式光伏支架在中国西北地区应用的经济性研究OA

ECONOMIC STUDY ON APPLICATION OF FLAT SINGLE-AXIS TRACKING PV BRACKETS IN THE NORTHWEST CHINA UNDER GRID SIDE TIME-OF-USE ELECTRICITY PRICING POLICY

中文摘要英文摘要

近年来,中国西北地区的新能源发展速度远超电力系统的消纳能力,弃光率有所回升.2024 年,中国多个省份调整了上网侧分时电价政策,将峰谷时段的电价差距拉大.基于此,首先详细介绍了2024 年上网侧分时电价政策调整前后中国西北地区(包括陕西省、甘肃省、宁夏回族自治区、青海省、新疆维吾尔自治区)具体的分时电价;然后对不同类型光伏支架的技术经济性进行了对比,并对上述 5 个地区的光伏发电系统分别采用平单轴跟踪式光伏支架和固定式光伏支架时的输出功率进行了对比分析;最后结合各地区的上网侧分时电价政策,对光伏发电系统分别采用平单轴跟踪式光伏支架和固定式光伏支架时的经济性进行了测算.研究结果表明:1)在新的上网侧分时电价政策下,5个地区中大部分地区将主要的光伏发电时段从平时段调整为低谷时段,峰谷电价差距加大.白天低谷时段的电价对光伏发电收益的影响较大,而平单轴跟踪式光伏支架早晚发电量大的特性可有效弥补收益损失,在西北地区应用时可显著提升光伏发电系统的投资收益.2)与采用固定式光伏支架相比,5 个地区的光伏发电系统采用平单轴跟踪式光伏支架时的年发电量均有显著提升,5个地区的年发电量平均提高了 15.07%.3)与采用固定式光伏支架相比,光伏发电系统采用平单轴跟踪式光伏支架时的静态成本高出约0.35元/W,运维成本高出约0.005元/W;5个地区的IRR平均值高出4.62%,资本金收益率平均值高出 17.68%.研究结果可为上网侧分时电价政策下中国西北地区的光伏发电项目投资提供可参考的数据化建议,并可为今后光伏发电项目的光伏支架选型和开发建设提供参考.

In recent years,the development speed of new energy in the Northwest China has far exceeded the consumption capacity of the power system,and the PV power curtailment rate has rebounded.In 2024,several provinces in China adjusted their time-of-use electricity pricing policies on the grid side,widening the electricity prices gap between peak and off-peak periods.Based on this,this paper first provides a detailed introduction to the specific situation of time-of-use electricity prices in the Northwest China(including Shaanxi Province,Gansu Province,Ningxia Hui Autonomous Region,Qinghai Province,and Xinjiang Uygur Autonomous Region)before and after the adjustment of the grid side time-of-use electricity pricing policy in 2024.Then,a comparison is made on the technical and economic feasibility of different types of PV brackets,and a comparative analysis is conducted on the output power of PV power generation systems in the five regions using flat single-axis tracking PV brackets and fixed PV brackets,respectively.Finally,based on the time-of-use electricity pricing policies on the grid side in various regions,the economic feasibility of using flat single-axis tracking PV brackets and fixed PV brackets for PV power generation systems is calculated.The research results show that:1)Under the new time-of-use electricity pricing policy on the grid side,most of the five regions have adjusted their main PV power generation periods from normal periods to off-peak periods,and the gap between electricity prices during peak periods and off-peak periods has widened.The electricity price during the daytime off-peak period has a significant impact on the revenue of PV power generation,while the flat single-axis tracking PV bracket has the characteristic of generating large amounts of electricity in the morning and evening,which can effectively compensate for the loss of revenue.When applied in the Northwest China,it can significantly improve the investment return of PV power generation systems.2)Compared with the use of fixed PV brackets,the PV power generation systems in the five regions have significantly increased their annual power generation capacity when using flat single-axis tracking PV brackets,with an average increase of 15.07%in annual power generation capacity in the five regions.3)Compared with using fixed PV brackets,the static cost of using flat single-axis tracking PV brackets in PV power generation systems is about 0.35 yuan per watt higher,and the operation and maintenance cost is about 0.005 yuan per watt.The average IRR in five regions is 4.62%higher,and the average return on capital is 17.68%higher.The research results can provide data-driven recommendations for investment in PV power generation projects in the Northwest China under the time-of-use electricity pricing policy on the grid side,and can also provide reference for the PV bracket selection and development of PV power generation projects in the future.

马铂浩;尹德志;黄炜;王东彪;宋亮亮

广东省建筑工程集团股份有限公司,广州 511340||广东粤水电能源投资集团有限公司,广州 511340广东粤水电能源投资集团有限公司,广州 511340广东省建筑工程集团股份有限公司,广州 511340广东粤水电能源投资集团有限公司,广州 511340广东粤水电能源投资集团有限公司,广州 511340

能源科技

分时电价跟踪式光伏支架平单轴光伏发电发电量西北地区

time-of-use electricity pricetracking PV bracketflat single-axisPV power generationpower generation capapcityNorthwest China

《太阳能》 2026 (2)

23-33,11

10.19911/j.1003-0417.tyn20250110.02

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