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Photovoltaic power generation (PV) refers to the conversion of sunlight into electricity using solar panels. In recent years, as the efficiency of PV technology has improved and costs have decreased, the concept of grid parity or \"平价上网\" has gained significant attention in the solar industry.

Grid parity occurs when the cost of electricity generated from PV systems is equal to or cheaper than electricity generated from traditional sources, such as coal or natural gas. This milestone signals a major turning point in the adoption of renewable energy solutions, as it makes solar power an economically viable option for meeting electricity demand.
China, as the world\'s largest producer and consumer of solar panels, has been at the forefront of achieving grid parity. The government has implemented various policies and incentives to support the development and deployment of PV systems, aiming to reduce dependence on fossil fuels and transition towards a greener energy future.
One of the key drivers behind the achievement of grid parity for photovoltaic power is the continuous improvement in technology and manufacturing processes. Over the years, PV efficiency has steadily increased, allowing for greater electricity generation from smaller surface areas. Moreover, economies of scale have played a significant role in driving down the cost of solar panels, making them more affordable for consumers and businesses alike.
Another important factor contributing to grid parity is the reduction in installation and maintenance costs. As the solar industry has matured, installation processes have become more streamlined, and new technologies have emerged to simplify maintenance and improve system performance. These advancements have further lowered the overall cost of solar power, making it increasingly competitive with traditional energy sources.
The achievement of grid parity for photovoltaic power has brought numerous benefits. First and foremost, it has significantly reduced greenhouse gas emissions and air pollution associated with fossil fuel-based power generation. Additionally, it has created new job opportunities in the solar industry and stimulated economic growth.
Looking ahead, the continued advancement of PV technology, coupled with supportive policies and investments, will further drive down costs and accelerate the adoption of solar power on a global scale. As more countries strive to achieve grid parity, we can expect a rapid transition towards a clean and sustainable energy future.
光伏平价上网 英语(光伏 平价上网)

光伏行业所说的平价上网,是针对煤发电成本而言的。
即光伏发电的成本达到煤发电的成本,即可以达到与煤发电上网电价相同的价格。
目前由于光伏发电成本的价格还是高于煤发电的价格,所以国家目前是通过补贴来达到新能源与煤发电的平衡,以保证新能源行业的发展。
但国家的中长期目标就是达到光伏上网电价=煤上网电价,即平价上网。
光伏平价上网电价

平价上网:光伏电站的平价上网是指电网供电的峰平电价,工、商业用电结构分为峰尖、峰平、峰谷。就是光伏电站传输给电网时,价格与火电、水电价格持平,因此为平价上网。
平价上网还分为低压用户侧和中高压发电侧,由于用户侧电价高为每度1元左右,因此平价容易实现,而发电侧0.3元,比较难。
光伏并网发电系统的电价收益由以下组成:
1、省内补贴0.1,补20年。
2、国家补贴0.42,补20年。
3、售电费,普遍《能源合同管理协议》是按峰时电价的9折计算。
4、地级市补贴,个别地方有,一般在0.1-0.18之间,可享受3-5年补贴。
光伏 平价上网

一、平价上网是指电网供电的峰平电价,工、商业用电结构分为峰尖、峰平、峰谷。二、光伏并网发电系统的电价收益由以下组成:1、国家补贴0.42,补20年。2、省内补贴0.1,补20年。3、地级市补贴,个别地方有,一般在0.1-0.18之间,可享受3-5年补贴。4、售电费,普遍《能源合同管理协议》是按峰时电价的9折计算。以上总和则是电站投资方每度电的收益。
光伏翻译

光伏英文:Photovoltaic。
光伏行业Photovoltaic industry。
光伏电站Photovoltaic power station。并网光伏电站Grid-connected PV power station。
多品Poly crystalline。
单品Mono crystalline。
光伏组件 PV module。
光伏支架PV support bracket。
汇流箱Combining manifolds。
逆变器Grid-connected inverter。电力变压器Power transformer。
油漫式变压器oil-immersed type transformer。
干式变压器Dry-type transformer。
中性点端子Neutral terminal。
光伏英语翻译

光伏发电
英文:photovoltaic
The solar electrical energy generation system is the new energy leader.
新能源时代,太阳能光伏发电已经成为人类社会发展的必然选择.
Off - grid photovoltaic power generation system includes two main aspects charge and inverter. 离网型光伏发电系统包括充电与逆变两个主要环节.
The configuration and principle of photovoltaic power generation system were analyzed at first. 阐述了光伏发电系统的组成及工作原理.
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