市場調查報告書
商品編碼
1305935
公用事業規模串列型逆變器市場規模按電壓(< 1500 V, ≥ 1500 V)分類及預測,2023 - 2032年Utility Scale String Inverter Market Size - By Voltage, Regional Insights, Application Potential, Growth Drivers & Forecast, 2023-2032 |
全球公用事業規模串列型逆變器市場將在2023年至2032年間獲得可觀的收益。對太陽能和風能等再生能源日益成長的需求推動了公用事業規模行業的發展,推動了市場成長。
串列型逆變器能夠有效地將大型太陽能電池陣列產生的直流電轉換為交流電,以便並網,因此受到青睞。此外,串列型逆變器還具有模組化設計、可擴展性和易於維護等優勢。太陽能安裝成本的下降和政府激勵政策的支持進一步刺激了市場。此外,串列型逆變器技術的進步,如效率和可靠性的提高,將在2032年前加強市場成長軌跡。
整個公用事業規模串列型逆變器市場根據電壓和地區進行分類。
就電壓而言,從2023年到2032年,≥1500V的公用事業規模串列型逆變器市場規模將以顯著的年複合成長率成長。更高的電壓系統可提高功率輸出,更有效地利用大規模太陽能電池陣。這將降低安裝和維護成本,因為在給定容量下所需的逆變器數量更少。此外,更高的電壓系統有助於最大限度地減少電阻損耗,延長組串長度,降低整個系統的複雜性,提高整體發電量。此外,採用更高的電壓系統符合大型公用事業規模項目的發展趨勢,這些項目部署更高的功率容量。因此,≥1500V公用事業規模串列型逆變器具有更高的性能、成本效益和可擴展性,推動其需求不斷成長。
從區域角度來看,到2032年,北美公用事業規模串列型逆變器行業將佔據相當大的市場佔有率。該地區越來越重視再生能源,尤其是太陽能,將其作為減少碳排放和向清潔能源系統過渡的一種手段。這導致該地區公用事業規模的太陽能項目激增。串列型逆變器因其靈活性、可擴展性和易於整合而備受青睞,是大規模安裝的理想選擇。此外,太陽能技術成本不斷下降,加上政府激勵措施和有利政策,為公用事業規模串列型逆變器創造了有利的市場環境。此外,串列型逆變器技術在可靠性和效率方面的改進使人們對其性能和使用壽命充滿信心,進一步推動了其在北美的需求。
Global Utility Scale String Inverter Market will garner commendable gains between 2023 and 2032. The increasing demand for renewable energy sources, such as solar and wind, is fueling the growth of the utility-scale sector, driving market growth.
String inverters are preferred for their ability to efficiently convert the DC power generated by large-scale solar arrays into AC power for grid integration. Additionally, string inverters offer advantages such as modular design, scalability, and ease of maintenance. The declining costs of solar installations and government support in the form of incentives and policies further stimulate the market. Furthermore, advancements in string inverter technology, such as improved efficiency and reliability, will strengthen the market growth trajectory through 2032.
The overall utility scale string inverter market is segregated based on voltage and region.
With respect to voltage, the utility scale string inverter market size from the ≥ 1500 V segment will expand at a notable CAGR from 2023 to 2032. Higher voltage systems allow for increased power output, enabling more efficient utilization of large-scale solar arrays. This results in lower installation and maintenance costs, as fewer inverters are required for a given capacity. Additionally, higher voltage systems help minimize resistive losses and enable longer string lengths, reducing the overall system complexity and improving the overall energy yield. Moreover, the adoption of higher voltage systems aligns with the trend of larger utility-scale projects, where higher power capacities are being deployed. As a result, ≥1500 V utility-scale string inverters offer improved performance, cost-efficiency, and scalability, driving their increasing demand.
From a regional perspective, the North America utility scale string inverter industry will amass a decent market share by 2032. The region has an increasing focus on renewable energy sources, particularly solar, as a means to reduce carbon emissions and transition towards cleaner energy systems. This has led to a surge in utility-scale solar projects across the region. String inverters are preferred for their flexibility, scalability, and ease of integration, making them ideal for large-scale installations. Additionally, the declining costs of solar technology, coupled with government incentives and favorable policies, have created a favorable market environment for utility-scale string inverters. Furthermore, the reliability and efficiency improvements in string inverter technology have instilled confidence in their performance and longevity, further driving their demand in North America.