市場調查報告書
商品編碼
1245595
智能電網傳感器全球市場規模、份額、行業趨勢分析報告:按應用、按類型(電壓/溫度傳感器、停電檢測、其他)、展望和地區預測,2022-2028 年Global Smart Grid Sensors Market Size, Share & Industry Trends Analysis Report By Application, By Type (Voltage & Temperature Sensors, Outage Detection and Others), By Regional Outlook and Forecast, 2022 - 2028 |
到 2028 年,智能電網傳感器的全球市場規模預計將達到 9.138 億美元,預計該市場在預測期內將以 15.8% 的複合年增長率增長。
智能電網系統可以自動跟蹤各地的用電量。 能源管理軟件和電網架構也可用於估算公司的能源使用情況和成本。 需求通常會推高電價。 智能電網能源管理系統為用戶提供有關當前能源使用情況和能源成本的信息,幫助他們在高成本高峰需求期間減少消耗。
與電網發展相關的多項舉措在全球範圍內勢頭迅猛。 現代能源網絡使傳統能源與可再生能源和儲能相結合成為可能。 例如,美國能源部 (DOE) 電網現代化計劃已宣布計劃開發未來的先進電網。 該部正在與多個公共和私人合作夥伴合作,以構建評估、測量、預測和監管智能電網所需的工具和技術。
COVID-19 影響分析
COVID-19 迫使智能電網傳感器領域做出具有直接和長期影響的選擇。 然而,COVID-19 對智能電網傳感器市場的負面影響預計是短期的。 另一方面,隨著整個工業部門對數字解決方案的需求增長,預計市場將在 2022 年年中強勁復甦。 此外,當前的大流行預計將增加對高端測試解決方案的需求,從而在市場上創造潛在機會。
市場增長因素
政府政策和有利於市場增長的政策
這些技術有望促進長期經濟增長並幫助政府實現其碳減排目標,越來越多地得到各國政府的資助。我來了。 然而,一些國家已經引入了淨能量計量協議和設備,而另一些國家仍在研究這項技術和機制。 這將開闢有利可圖的商業前景。 例如,印度財政部長在2020年表示,政府計劃在三年內將所有傳統電錶更換為智能電錶。 世界各國政府推出的這些政府計劃促進了市場擴張。
電動汽車銷量上升推動市場增長
電動汽車 (EV) 有朝一日將超越內燃機的未來將需要更好的電網技術,而增加的容量可能有助於抑制能源消耗的峰值。. 為了實現更智能的電網,電網基礎設施必須配備可靠的蜂窩連接。 此外,您應該使用物聯網傳感器。 與上文提到的 DERMS 類似,這是一種智能需求響應等,可以在 EV 充電高峰期間平衡負載,甚至自動將不必要的高峰檔位轉移到一天中的其他時間。有助於解鎖新的能源管理機會。
市場製約因素
引入智能電網技術的初始成本高
市場增長預計將受到這些電網系統高投資成本的限制。 客戶和高級電網之間的電網必須使用這些技術來構建,這些技術最初很昂貴。 即使在安裝之後,高昂的運營和維護成本仍然是電力供應商關注的主要問題。 印度、墨西哥和巴西是基礎設施薄弱且系統升級成本高昂的發展中國家的例子。
按類型劃分的前景
根據類型,智能電網傳感器市場分為電壓和溫度傳感器、斷電檢測等。 停電檢測細分市場將在 2021 年佔據可觀的收入份額。 私營公司可以通過使用智能電錶查看其基礎設施或家中是否發生停電,從而避免不必要且代價高昂的上門服務。 通過從智能電錶收集數據,公用事業可以快速識別和糾正公用事業問題。 智能電錶可識別通常由極端天氣引起的嵌套問題。 好處包括通過減少駕駛距離來提高工人的安全性和減少車輛的碳足跡,尤其是在惡劣天氣下。
使用展望
根據應用,智能電網傳感器市場分為高級計量基礎設施、智能電網配電管理、監控和數據採集、智能電錶等。 2021 年,監督控制和數據採集部門將佔據很大的收入份額。 SCADA 系統用於調節和監控構成現代社會基礎的系統的物理過程示例,例如電力傳輸、石油和天然氣通過管道的流動、交通信號燈和配水。。
區域展望
按地區劃分,智能電網傳感器市場分為北美、歐洲、亞太地區和 LAMEA。 由於亞太地區專注於這些技術的傳播和可再生能源的擴張,目前亞太地區的收入份額最大。 例如,印度政府的智能電錶國家計劃已承諾到 2020 年 2 月在全國安裝 100 萬個智能電錶 (SMNP)。 中國、印度、澳大利亞、日本和韓國等國家也為該地區的繁榮做出了重大貢獻,而中國最有可能成為這一發展的領導者。
The Global Smart Grid Sensors Market size is expected to reach $913.8 Million by 2028, rising at a market growth of 15.8% CAGR during the forecast period.
A smart grid sensor gathers information about the electrical power infrastructure. These sensors can measure various variables, including voltage, temperature, current, and power use. The data collected by these sensors may be utilized to improve the electric power grid's effectiveness, dependability, and security. In addition, smart grid sensors have an Internet connection that enables the data they gather to be sent to a distant location for monitoring and analysis.
In order to find patterns and abnormalities in the data, some smart grid sensor systems utilize sophisticated analytics and machine learning algorithms. This may assist utilities in identifying and preventing problems like power outages and equipment breakdowns. Enterprises, retail establishments, hospitals, colleges, and international businesses may all benefit from smart grid technology.
The smart grid system is automated to track how much power is used everywhere. Energy management software and grid architecture are sometimes used to estimate an enterprise's energy use and costs. In general, demand drives up power rates. Smart grid energy management systems assist in reducing consumption during high-cost, peak-demand periods by giving users information about current energy usage and energy costs.
Across the globe, several efforts related to grid advances are gathering steam. Modern energy networks make it possible to combine conventional energy sources with renewables and energy storage. For instance, the Grid Modernization Initiative of the US Department of Energy (DOE) has declared plans to develop the advanced grid of the future. The department collaborates with several public and commercial partners to build the tools and technology required to evaluate, measure, anticipate, and regulate the smart grid.
COVID-19 Impact Analysis
COVID-19 has mandated that the smart grid sensors sector make choices that have both immediate and long-term effects. Yet, it's anticipated that COVID-19's detrimental impact on the market for smart grid sensors would only last a short while. On the other hand, by mid-2022, the market is expected to have a strong rebound due to the widespread demand for digital solutions across industrial sectors. Also, the current pandemic is anticipated to increase demand for high-end testing solutions, creating a potential opportunity for the market.
Market Growth Factors
Government policies and regulations that are favorable to market growth
While these technologies are predicted to promote long-term economic growth and assist governments in meeting their carbon emission reduction goals, they are increasingly being funded by various governments. However, some nations have net energy metering protocols and equipment, while others are still researching the technology and its workings. This is likely to open up lucrative business prospects. For instance, the Indian Finance Minister said in 2020 that the government plans to switch to smart power meters in three years to replace all conventional ones. These government programs launched by governments of various nations worldwide promote market expansion.
Increase in electric car sales to boost market growth
A future where electric vehicles (EVs) might someday outnumber internal combustion engines would need better grid technology, while increasing capacity may assist with peak energy consumption. In order to achieve a more intelligent grid, grid infrastructure must be equipped with dependable cellular connectivity. Additionally, Internet of Things (IoT) sensors must be used, as they can help unlock new energy management opportunities such as intelligent demand response, which can help balance the load during peak EV charging times and even automatically shift non-essential gears from peak demand periods to other times of the day, as well as the aforementioned DERMS.
Market Restraining Factors
High initial costs for smart grid technologies adoption
The market growth is anticipated to be constrained by the high investment cost of these grid systems. The transmission network between the clients and the advanced grid must be put up using these technologies, which initially requires significant expenditures. After implementation, high operations and maintenance costs are a major worry for power suppliers. India, Mexico, and Brazil are examples of developing nations with poor infrastructure that need substantial expenditures to update their systems.
Type Outlook
Based on the type, the smart grid sensors market is segmented into voltage & temperature sensors, outage detection, and others. The outage detection market segment garnered a significant revenue share in 2021. Utility companies may avoid needless and costly truck rolls by using smart meters to verify whether an outage occurs on their infrastructure or at a private house. Utilities can swiftly identify and fix utility-side issues by collecting data from smart meters. Smart meters determine the nested problems often brought on by extreme weather. Advantages include less miles driven, particularly during bad weather, which enhances worker safety and lowers vehicle carbon emissions.
Application Outlook
Based on application, the smart grid sensors market is divided into Advanced Metering Infrastructure, Smart Grid Distribution Management, Supervisory Control and Data Acquisition, Smart Energy Meters, and Others. The supervisory control and data acquisition department obtained a sizeable revenue share in 2021. A few examples of the physical processes that SCADA systems are used to regulate and monitor include the transmission of electricity, the flow of gas and oil through pipelines, traffic lights, the distribution of water, and other systems that serve as the foundation of contemporary society.
Regional Outlook
Based on region, the Smart Grid Sensors Market is divided into North America, Europe, Asia Pacific, and LAMEA. Due to the widespread use of these technologies and a strong emphasis on expanding renewable energy, Asia Pacific now accounts for the largest revenue share in the market. For instance, the Smart Meter National Plan of the Indian Government declared in February 2020 that 1 million smart meters will be installed throughout the nation (SMNP). In addition, countries like China, India, Australia, Japan, and South Korea are significant contributors to the region's prosperity, with China being the most likely leader in such deployment.
The market research report covers the analysis of key stake holders of the market. Key companies profiled in the report include General Electric Company (GE Grid Solutions), Siemens Energy AG, ABB Group, Renesas Electronics Corporation (Echelon Industries Corporation), Aclara Technologies LLC. (Hubbell Incorporated), Landis+Gyr Group AG, Itron, Inc., S&C Electric Company, Trilliant Holdings, Inc., and Sentient Energy, Inc. (Koch Engineered Solutions) (Koch Industries, Inc.)
Strategies Deployed in Smart Grid Sensors Market
Feb-2023: GE Digital came into collaboration with Amazon Web Services, a subsidiary of Amazon that provides on-demand cloud computing platforms and APIs to individuals, companies, etc. Under this collaboration, both organizations would be able to provide the latest smart grid orchestration solutions. Moreover, GE Digital would be able to give a new GridOS, a grid operating software platform, and cloud-enabled solutions that are crafted to be quicker, and secure, and help lower infrastructure and operational costs for energy organizations.
Jan-2023: Landis+Gyr Technology Inc, signed an agreement with the National Grid of Massachusetts. Under this agreement, Landis+Gyr Technology Inc would be providing a total of 1.4 million grid sensors for a next-generation advanced metering infrastructure (AMI) project in Massachusetts.
Dec-2022: GE Grid Solutions came into partnership with LineVision, Inc., a climate tech company. Under this partnership, both organizations would be able to sell utilities that are the world's first integrated suite of grid-enhancing technologies which is used to improve transmission capability on living infrastructure.
Nov-2022: GE Renewable Energy's Grid Solutions business unveiled the new 123kV, 16.7Hz HYpact switchgear. This new 123kV, 16.7Hz HYpact switchgear is an element of the EU-funded IN2STEMPO project which is a digital hybrid compact switchgear and is the first of its kind. Additionally, this new product makes the unpredictability of the electrical network more predictable along with lowering the customer's operational costs.
Nov-2022: Siemens Smart Infrastructure came into partnership with OverIT, the global leader in field service management. Under this partnership, Siemens Smart Infrastructure would be able to strengthen its portfolio ecosystem, also allowing regular growth in distributed renewable energy by combining information from all necessary parts of the converging OT/IT landscape.
Apr-2022: Siemens Energy unveiled CAREPOLE. CAREPOLE is an ingenious dry-type single-phase transformer for pole applications. Additionally, it is prepared for the technological needs of the American grid and the new cast-resin diffusion transformer delivers a trustworthy and sustainable option to oil-filled transformers.
Jan-2020: Siemens Ltd. took over C&S Electric Limited, a leading manufacturer of electrical and electronic equipment in India. Through this acquisition, Siemens Ltd. would strengthen its standing as a critical supplier of electrical installation technology and low-voltage power distribution in one of the world's rapidly expanding economies.
Apr-2019: S&C Electric Company unveiled Scada-Mate SD Switching System. The new Scada-Mate SD Switching System is a non-SF6 environmentally friendly solution developed to enhance dependability while lowering greenhouse gases on the distribution grid. Additionally, this switching system utilizes vacuum interrupters to extinguish electrical arcs that replace the SF6 gas interrupters operated in the previous products of the same product line.
Market Segments covered in the Report:
By Application
By Type
By Geography
Companies Profiled
Unique Offerings from KBV Research
List of Figures