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分布式光伏發(fā)電的工作原理介紹

發(fā)布時(shí)間:2023-12-19 發(fā)布人:天合·種電 發(fā)布來(lái)源:http://www.51dwgw.cn/

分布式光伏發(fā)電是指將太陽(yáng)能光伏發(fā)電設(shè)備分布在用戶用電的地方,通過(guò)本地用電和余電回供的方式,理論上可以在一定程度上實(shí)現(xiàn)用戶的自給自足,或?yàn)殡娋W(wǎng)提供電源。以下是分布式光伏發(fā)電的工作原理:

Distributed photovoltaic power generation refers to the distribution of solar photovoltaic power generation equipment in the areas where users use electricity. Through local electricity consumption and residual electricity supply, it can theoretically achieve user self-sufficiency to a certain extent or provide power to the grid. The following is the working principle of distributed photovoltaic power generation:

光伏組件吸收日光。光伏組件吸收來(lái)自太陽(yáng)的能量,將太陽(yáng)光轉(zhuǎn)化為電能。

Photovoltaic modules absorb sunlight. Photovoltaic modules absorb energy from the sun and convert sunlight into electrical energy.

直流電輸送。電能經(jīng)過(guò)逆變器的變換作用轉(zhuǎn)化為直流電,然后經(jīng)過(guò)電線輸送到矩陣電池中寄存。

Direct current transmission. The electrical energy is converted into direct current through the conversion effect of the inverter, and then transmitted through wires to the matrix battery for storage.

負(fù)荷就地供電。直流電再經(jīng)過(guò)逆變器的處理,轉(zhuǎn)化為交流電,供應(yīng)用戶使用,稱作就地供電。

Load local power supply. Direct current is then processed by an inverter and converted into alternating current, which is supplied to users for use, known as on-site power supply.

余電回饋。當(dāng)直流電產(chǎn)生的能量大于用戶所消耗的能量時(shí),多余的電能可以回饋到電網(wǎng)中,成為余電供電,即余電輸出。

Residual electricity feedback. When the energy generated by direct current is greater than the energy consumed by the user, the excess electrical energy can be fed back to the grid and become surplus power supply, that is, surplus power output.

綜合用電與余電回饋供電。用戶用電的產(chǎn)生往往呈不穩(wěn)定的特點(diǎn),因此分布式光伏發(fā)電系統(tǒng)還可以通過(guò)綜合用電與余電回饋供電的方式,以滿足各種用電需求。

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Comprehensive electricity consumption and surplus electricity feedback power supply. The generation of electricity consumption by users is often characterized by instability, so distributed photovoltaic power generation systems can also meet various electricity needs through comprehensive electricity consumption and residual electricity feedback power supply.

總之,分布式光伏發(fā)電是通過(guò)將太陽(yáng)能光伏發(fā)電設(shè)備分布在用戶用電地方,實(shí)現(xiàn)就地供電和余電回饋供電的方式,可以在一定程度上實(shí)現(xiàn)用戶的自給自足,或?yàn)殡娋W(wǎng)提供電源,實(shí)現(xiàn)節(jié)能減排的效果。

In short, distributed photovoltaic power generation is a method of distributing solar photovoltaic power generation equipment in the user's electricity consumption area, achieving on-site power supply and residual electricity feedback power supply, which can to some extent achieve user self-sufficiency or provide power to the grid, achieving energy-saving and emission reduction effects.

分布式光伏發(fā)電的結(jié)構(gòu)組成

The structural composition of distributed photovoltaic power generation

分布式光伏發(fā)電系統(tǒng)的結(jié)構(gòu)組成主要包括光伏組件、逆變器、電池儲(chǔ)能系統(tǒng)、監(jiān)測(cè)系統(tǒng)等幾個(gè)部分。

The structural components of a distributed photovoltaic power generation system mainly include photovoltaic modules, inverters, battery energy storage systems, monitoring systems, and other parts.

光伏組件:光伏組件是分布式光伏發(fā)電系統(tǒng)中基本的部件,用于將太陽(yáng)能光線轉(zhuǎn)換為電能。光伏組件一般由太陽(yáng)能電池片、強(qiáng)化玻璃、背板、邊框等組成,其組件類型包括多晶硅、單晶硅、非晶硅等。

Photovoltaic modules: Photovoltaic modules are the basic components in distributed photovoltaic power generation systems, used to convert solar light into electrical energy. Photovoltaic modules are generally composed of solar cells, reinforced glass, backplates, frames, etc. The types of modules include polycrystalline silicon, monocrystalline silicon, amorphous silicon, etc.

逆變器:逆變器是分布式光伏發(fā)電系統(tǒng)中的核心部件,將光伏組件產(chǎn)生的直流電轉(zhuǎn)換為電網(wǎng)所需的交流電,并將電網(wǎng)的供電調(diào)整為適合光伏組件的直流電輸出,以提高分布式光伏發(fā)電的效率。

Inverters: Inverters are the core components of distributed photovoltaic power generation systems, which convert the direct current generated by photovoltaic modules into the alternating current required by the grid, and adjust the power supply of the grid to the DC output suitable for photovoltaic modules to improve the efficiency of distributed photovoltaic power generation.

電池儲(chǔ)能系統(tǒng):電池儲(chǔ)能系統(tǒng)是分布式光伏發(fā)電系統(tǒng)中的儲(chǔ)能部件,用于儲(chǔ)存組件輸出的電能,供給夜間或需求峰值的用電場(chǎng)景。目前較為成熟的電池儲(chǔ)能技術(shù)主要包括鋰離子電池、鉛酸電池、鈉硫電池等。

Battery Energy Storage System: A battery energy storage system is an energy storage component in a distributed photovoltaic power generation system, used to store the electrical energy output by the components and supply electricity for nighttime or peak demand scenarios. At present, mature battery energy storage technologies mainly include lithium-ion batteries, lead-acid batteries, sodium sulfur batteries, etc.

監(jiān)測(cè)系統(tǒng):監(jiān)測(cè)系統(tǒng)用于監(jiān)測(cè)整個(gè)分布式光伏發(fā)電系統(tǒng)的性能指標(biāo),包括光伏組件的發(fā)電效率、逆變器的轉(zhuǎn)換效率、電池儲(chǔ)能系統(tǒng)的充放電效率等,以確保系統(tǒng)的安全和有效運(yùn)行。

Monitoring system: The monitoring system is used to monitor the performance indicators of the entire distributed photovoltaic power generation system, including the generation efficiency of photovoltaic modules, the conversion efficiency of inverters, and the charging and discharging efficiency of battery energy storage systems, to ensure the safe and effective operation of the system.

支撐架:支撐架是分布式光伏發(fā)電的安裝組件,可分為分立支撐架和一體支撐架。分立支撐架適用于屋頂光伏電站,一體式支架適用于農(nóng)業(yè)光伏、戶外太陽(yáng)能路燈等。

Support frame: The support frame is the installation component of distributed photovoltaic power generation, which can be divided into discrete support frames and integrated support frames. The discrete support frame is suitable for rooftop photovoltaic power stations, while the integrated support frame is suitable for agricultural photovoltaics, outdoor solar street lights, etc.

總之,分布式光伏發(fā)電系統(tǒng)由光伏組件、逆變器、電池儲(chǔ)能系統(tǒng)、監(jiān)測(cè)系統(tǒng)及支撐架等組成。它結(jié)構(gòu)簡(jiǎn)單、技術(shù)可靠、施工方便等優(yōu)點(diǎn),已經(jīng)成為清潔能源的重要領(lǐng)域之一。

In summary, a distributed photovoltaic power generation system consists of photovoltaic modules, inverters, battery energy storage systems, monitoring systems, and support frames. It has become one of the important fields of clean energy due to its simple structure, reliable technology, and convenient construction.

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