市場調查報告書
商品編碼
1209883
全球電壓/VAR 管理市場:到 2028 年的預測 - 按組件(軟件和服務、硬件)、應用程序(傳輸、生成、分配)、最終用戶(工業、公用事業)、地區分析Volt/VAR Management Market Forecasts to 2028 - Global Analysis By Component (Software & Services and Hardware), Application (Transmission, Generation and Distribution), End User (Industrial and Electric Utility) and Geography |
根據 Stratistics MRC 的數據,2022 年全球 Volt/VAR 管理市場規模將達到 5.364 億美元,預計到 2028 年將達到 8.4649 億美元,預測期內復合年增長率為 7.9%。
電壓/VAR 管理通過減少無功功率流、將電壓保持在限制範圍內以及通過降低電壓限制峰值功率來減少能量損失。現代電網自動化的第一步是中低壓電網的故障識別。這改善了電壓控制並增加了網絡託管能力。
據 IEA(國際能源署)稱,2018 年全球能源需求增長了 4%(900 TWH)。工業部門在 2017 年消耗的能源最多,約為 8945 TWH,而 2016 年為 8699 TWH。
市場動態
促進者
電力行業對高效配電和能源管理的需求不斷增長
電壓/VAR 管理市場是由不斷增長的電力需求驅動的。製造商正在提高創新標準,因為電氣行業需要高效的分佈式能源管理。2019年Schneider Electric架構工具“EcoStruxure Power”發布。該解決方案旨在提高電氣行業微電網的穩定性、效率和彈性。施耐德產品的出現,增加了整個市場的非價格競爭,也帶動了很多其他廠商致力於開發新產品。
抑制因素
安裝成本高
VVO 的成本和收益因部署的系統類型而異。安裝用於電壓控制和 VAR 管理的設備和系統需要額外的資本投資和運營/維護成本。增加受影響饋線的實際電力容量,推遲發電、輸電和配電的資本重組項目,並降低燃料價格,以減少燃料成本降低和化石燃料發電帶來的排放。
機會
更加關注電力潮流
大型工業和商業設備需要網絡連接分析和交換計劃。因此,行業領導者必須實施電壓/VAR 管理系統。隨著G20致力於高度協調的電力工業發展,許多領域都需要電壓管理。因此,毫無疑問,電網和電壓監控行業正在蓬勃發展。
威脅
能力有限
Volt-VAR 吸引了很多人的興趣,因為它們不需要削減發電量。但是,由於家用太陽能逆變器的容量(kVA)對應於面板的最大有效發電量(kW),因此能夠吸收的容量是有限的。然而,家用太陽能逆變器的大小(kVA)與面板的最大有功功率(kW)相對應,並且有功功率優先,因此當它們產生大量時吸收無功功率(kVAR)的能力有限。綜合考慮各種無功曲線和光伏滲透率,分析出在最需要無功功率時無功控制失效。無功功率還會增加電流,從而增加資產利用率。
COVID-19 的影響
大流行對所有電氣和電子行業造成了沉重打擊。特別是在新興國家,電力是經濟擴張所必需的。實現 SDG7(實現可持續發展目標)對於實現可持續城市、工業、可持續健康和教育等許多其他 SDG 是必要的,為此,可靠、負擔得起的我們需要確保普遍獲得可持續的現代能源。
預計在預測期內,分銷部門將是最大的
由於智能電網部署的增加以及減少配電饋線中斷和故障的需要,預計在預測期內,電壓/VAR 管理市場的配電部分將主導全球市場。此外,住宅領域不斷增長的電力需求可能會推動該領域的市場。
預計電力公用事業服務在預測期內的複合年增長率最高。
這項服務將幫助電力公司向最終消費者提供具有理想功率因數的正確電壓,並將損失降至最低,這就是電壓/VAR 管理市場在預測期內增長率最高的原因。它由電力公司主導部分。此外,預計在預測期內,中國、印度和美國等經濟體的電力需求將顯著增加,從而增加對電壓/VAR 管理的需求。
市場佔有率最高的地區
由於電力傳輸和分配過程中使用的組件的技術進步,預計北美在預測期內將佔據全球伏特/無功管理市場的最大市場份額。此外,該地區的需求可能受到廣泛的應用、電動汽車的製造以及降低能源成本的迫切需求的影響。
複合年增長率最高的地區
由於可再生能源運營商的投資以及印度和中國等新興經濟體需要遏制能源價格上漲,預計亞太地區在預測期內將出現顯著增長。作為一個額外的好處,在不同地點安裝 Volt/VAR 系統來管理新的可再生能源項目中的發電量被認為有利於該地區的市場。
重大發展
2019 年 6 月,ABB 贏得了與中國國家電網公司(SGCC)的輸電合同。該公司將使用斷路器等高壓設備保護電網免受災難性故障的影響,並使用電容器組提高能源供應質量,延長產品壽命並減少損失。
2019年2月,Schneider Electric發布“Ecostruxure Power 2.0”。EcoStruxure Microgrid Operation 用於最新的 EcoStruxure Power 架構,以控制分佈式能源 (DER) 和保護系統,以提高微電網的穩定性和效率,從而擴大 Volt/VAR 管理市場。
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根據產品組合、地域分佈和戰略聯盟對主要參與者進行基準測試
According to Stratistics MRC, the Global Volt/VAR Management Market is accounted for $536.40 million in 2022 and is expected to reach $846.49 million by 2028 growing at a CAGR of 7.9% during the forecast period. Volt/VAR management lowers energy loss by reducing reactive power flows, maintaining voltages within the limits, and also limiting peak power by lowering voltage. The first step towards modernised grid automation is fault awareness of the medium voltage and low voltage grid. It improves voltage control and increases network hosting capacity.
According to IEA (International Energy Agency), the worldwide energy demand grew by 4% (900 TWH) in 2018. The highest amount of energy was consumed by industrial segment of around 8945 TWH in 2017 as compared to 8699 TWH in 2016.
Market Dynamics:
Driver:
Rising demand for efficient distribution and energy management in the electrical sector
The market for volt/VAR management is being driven by rising power demand. Manufacturers have raised the bar for innovation as a result of the electrical industry's need for efficient distributed energy management. In 2019, EcoStruxure Power, an architecture tool from Schneider Electric, was released. The solution is intended to increase the stability, efficiency, and resilience of electric industry micro grids. The emergence of Schneider's product heightened non-price competition throughout the market, inspiring many other manufacturers to commit to developing new products.
Restraint:
High installation costs
Depending on the procedure type, VVO costs and benefits vary. The installation of equipment and systems for voltage control and VAR management requires additional capital investments as well as operating and maintenance costs. To reduce fuel costs and emissions from reduced fossil-fired generating, increase the real-power capacity of impacted feeders, postpone capital enhancement projects for generation, transmission, and distribution, and lower fuel prices.
Opportunity:
Increasing focus on load flow of electricity
Network connectivity analyses and switching schedules are necessary for large industrial and commercial units. Volt/VAR management systems must be implemented by industrial leaders as a result of this. Voltage management has been required in a Variety of sectors as the G20 works to develop a highly coordinated electrical industry. Therefore, the existence of a booming industry for electrical network and voltage monitoring is not a misconception.
Threat:
Limited capacity
Volt-VAR has attained a lot of interest because it does not require generation curtailment. However, household-scale PV inverters are sized (kVA) to handle the panels' maximum active power generation (kW). They have a limited capacity to absorb reactive power (kVAR) during times of high generation because active power generation is typically given priority. Analysis shows that Volt-VAR control fails when reactive power is most needed when taking into account Various Volt-VAR curves and PV penetrations. Reactive power also raises currents and, consequently, asset utilisation.
COVID-19 Impact:
The pandemic severely harmed all electrical and electronics businesses. Power is necessary for economic expansion, especially in emerging markets. Achieving SDG 7 (Achieving Sustainable Development Goals), which aims to ensure that everyone has access to reliable, affordable, sustainable, and modern energy, is necessary for the accomplishment of many other SDGs, including those pertaining to sustainable cities, industry, sustainable health, and education.
The distribution segment is expected to be the largest during the forecast period
Due to the increased deployment of smart grids and the need to reduce power outages and faults in distribution feeders, the distribution segment of the volt/VAR management market is anticipated to dominate the worldwide market during the forecast period. Furthermore, increase in demand of electricity from residential sector might propel the market in this segment.
The electric utility segment is expected to have the highest CAGR during the forecast period
Because the service helps utilities supply the proper voltage to end-consumers at the ideal power factor to minimise losses, the electric utility segment accounted for the highest growth rate during the forecast period in the Volt/VAR management market. Additionally, in economies like China, India, and the US, the demand for power is anticipated to rise significantly over the forecast period, which is anticipated to increase the need for volt/VAR management.
Region with largest share:
Due to technological advancements of components used in the transmission and distribution process, North America is predicted to hold the largest market share during the period of the forecast for the global Volt/VAR management market. Furthermore, the regional demand may be influenced by a wide range of applications, the manufacture of electric vehicles, and the pressing need to reduce energy costs.
Region with highest CAGR:
Because of significant market demand brought on by investments from renewable energy providers and the need to contain rising energy prices in developing economies like India and China, Asia Pacific is anticipated to grow lucratively during the forecast period. Additionally, in the event of new renewable energy projects, installing Volt/VAR systems in various locations for managing power generated will benefit the market in this region.
Key players in the market
Some of the key players in Volt/VAR Management market include Open Systems International, ABB, GE Company, Schneider, S&C Electric Company, Advanced Control System, Eaton, Siemens, Utilidata, DVI, Landis+Gyr, Beckwith Electric, VArentec and DC System.
Key Developments:
In June 2019, ABB was awarded a power transmission contract by the State Grid Corporation of China (SGCC). The company plans to use high-voltage equipment such as breakers to safeguard the grid from disruptive failures and capacitor banks to improve the quality of the energy supply, extending product life and lowering losses.
In February 2019, Schneider Electric released the Ecostruxure Power 2.0. EcoStruxure Microgrid Operation is used in the latest EcoStruxure Power architecture to control Distributed Energy Resources (DER) and protection systems for better microgrid stability and efficiency increasing the Volt/VAR Management Market.
Components Covered:
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Benchmarking of key players based on product portfolio, geographical presence, and strategic alliances