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市場調查報告書
商品編碼
1324343
到 2030 年電動二輪車鋰離子電池管理系統市場預測:按電池類型、拓撲、車型、用途和地區進行全球分析Electric Two-Wheeler Lithium-Ion Battery Management System Market Forecasts to 2030 - Global Analysis By Battery Type, Topology, Vehicle Type, Application and By Geography |
據Stratistics MRC統計,2023年全球電動二輪車鋰離子電池管理系統市場規模為7.4億美元,預計2030年將達到30.6億美元,複合年複合成長率預計將成長22.3%。
該電氣系統稱為電池管理系統,負責調節和追蹤電池充電和放電,並發送有關電池組狀況和健康狀況的警報。電池管理系統的主要作用之一是提供必要的保護措施來保護電池免受損壞。如果鋰離子電池的電量消耗低於預定水平(約總容量的 5%),則可能會損壞。如果低於此水平放電,電池可能會遭受長期損壞。
比亞迪在沃倫·巴菲特旗下伯克希爾·哈撒韋公司的支持下,已指定四家英國經銷商合作夥伴:Pendragon、Arnold Clark、Lookers 和 LSH。比亞迪的首款車型將是Atto 3 SUV,經銷商合作夥伴和定價將在適當的時候公佈。
為了最大限度地減少溫室氣體(GHG)排放,世界各國政府制定了嚴格的法律法規,例如《京都議定書》。隨著人們對電動車和混合汽車負面環境影響的環保意識不斷增強,汽車行業不斷創新,開發了電動和混合動力汽車。此外,隨著消費者對更省油的車輛和更高的車輛經濟性的需求增加,電動車和混合汽車的技術不斷進步。電動車開始將電池管理系統整合到他們的車輛中,以最大限度地提高電動車的電池存儲容量,並降低電動和混合電動車電池過熱的風險。
在汽車行業,當車輛配備電池管理系統時,電池管理系統的零件需要合適的冷卻系統才能不間斷運行,這會產生額外的生產成本。然而,電池管理系統 (BMS) 需要許多端口來與每個電池組連接,因為每個電池都必須直接連接到 BMS。
電動汽車的未來傾向於對鋰離子電池的巨大需求,而不是引入旨在使車輛擺脫傳統燃料和碳排放的電動傳動系統。鋰離子電池現在內置了電池管理系統。鋰離子電池在具有電池管理系統的不同類型電池中保持著較大的市場佔有率,與鉛電池、鎳基電池等其他類型電池相比,其銷量有所成長,預計將快速成長。由於其高充電密度和輕重量,它被認為是電動車製造商感興趣的電池。
使用電池管理系統會顯著增加產品或應用的總體成本。由於高成本,注重成本的消費者可能會限制對產品和應用的需求,這可能會導致產品製造商放棄使用電池管理系統,儘管電池管理系統有很多好處。因此,注重成本的消費者將避免支付額外費用,產品製造商將不願承擔風險來滿足市場對技術進步和資本投資的需求,進而電動二輪車。限制了系統市場的成長。
由於 COVID-19 大流行,通勤者避免使用公共交通工具。電動自行車被認為是一種安全、實用且經濟高效的替代方案。據業內相關人員和 Rad Power Bikes、VanMoof 和 Lectric 電動自行車等電動自行車製造商稱,電動自行車正在成為一種越來越流行的交通方式。據工業資訊部統計,我國電動機車需求快速成長,2020年1-10月產量達到2548萬輛,同比成長33.4%。
由於鋰離子電池對於電動滑板車至關重要,滑板車領域預計將出現良好的成長。由於這些電池具有可充電類型的優勢,電動滑板車電池行業的製造商正在不斷嘗試這些電池。鋰離子電池具有高密度,適合需要大容量的情況。研究表明,鋰離子電池的自放電速度比 SLA 和鎳氫電池慢。
由於鋰離子電池最常用於汽車行業,因此遠程電氣化行業預計在預測期內年複合成長率最高。特別是在亞太地區、北美和歐洲,人們對電池驅動汽車的優勢的了解不斷加深,而汽油和柴油的成本不斷上升,正在吸引客戶轉向這些電動車和混合汽車。據稱,鋰離子電池使用最頻繁的行業是家電。隨著消費電子行業的不斷發展,鋰離子電池擴大用於各種用途。鋰離子電池具有安全、低污染、高功率等諸多優點。
由於歐洲是歐洲主要的汽車生產國之一,預計在預測期內將佔據最大的市場佔有率。過去幾年,歐洲地區許多國家的政府為電力行業的研發項目提供了大量支持和投資。隨著汽車產量的增加、對儲能解決方案的需求增加、環境問題推動電動車的採用以及對鋰離子電池研究項目的大量投資,歐洲地區正在不斷成長,對鋰離子電池的需求正在迅速擴大。
在全球電動車市場的推動下,預計亞太地區在預測期內將呈現最高的年複合成長率。鋰離子電池正在汽車行業迅速採用。此外,隨著中國、印度、日本和新加坡等許多國家對智慧手機、筆記型電腦和其他電子設備的需求不斷增加。
According to Stratistics MRC, the Global Electric Two-Wheeler Lithium-Ion Battery Management SystemMarket is accounted for $0.74 billion in 2023 and is expected to reach $3.06 billion by 2030 growing at a CAGR of 22.3% during the forecast period. An electrical system known as a battery management system regulates and tracks the charging and discharging of batteries and sends alerts on the status and health of battery packs. One of the main roles of a battery management system is to provide essential safeguards to protect batteries from damage. A lithium-ion battery can sustain damage if it is depleted below a predetermined level, which is roughly 5% of its total capacity. Batteries could sustain long-term damage if they are allowed to discharge below this point.
According to theChinese automaker, began selling vehicles in the United Kingdom this quarter, where electric vehicles are gaining market share.Backed by Warren Buffett's Berkshire Hathaway, it has appointed four UK dealer partners in Pendragon, Arnold Clark, Lookers, and LSH.BYD's first model will be the Atto 3 SUV, and more dealer partners and pricing will be announced.
To minimize greenhouse gas (GHG) emissions, governments all over the world have put in place strict laws and regulations, such as the Kyoto Protocol. The automobile industry has innovated with the development of electric and hybrid vehicles as a result of growing environmental consciousness regarding the negative environmental effects of gasoline and diesel-powered vehicles. Additionally, as consumer demand for fuel-efficient automobiles and increased vehicle economy grows, electric and hybrid vehicles continue to progress technologically. Battery management systems have begun to be incorporated into vehicles by manufacturers in order to maximize the use of battery storage capacity in electric vehicles and reduce risks brought on by battery overheating in electric and hybrid electric vehicles.
The installation of a battery management system in a vehicle entails additional production expenses in the automobile industry, a suitable cooling system is necessary for the components of the battery management system to operate without interruption. However, a battery management system (BMS) needs a lot of ports to interface with all battery packages because all batteries should be directly connected to the BMS.
Future e-mobility is leaning toward significant demand for lithium-ion batteries due to the introduction of electric-powered drivetrains intended to transition vehicles away from traditional fuels and carbon gas emissions. Lithium-ion batteries now come with built-in battery management systems. Lithium-ion batteries retain a significant market share among a variety of different battery kinds that also contain battery management systems, and their sales are predicted to increase quickly in comparison to those of other battery types like lead-acid and nickel-based batteries. Because of their high charge density and low weight, they are recognized as battery of interest by producers of electric vehicles.
The usage of a battery management system might result in a significant increase in the overall cost of a product or application. Because of this high cost, cost-conscious consumers may limit their demand for the product or application, which could discourage product makers from utilizing battery management systems despite its benefits. Therefore, cost-conscious consumers avoid making additional payments, which deters product manufacturers from taking risks to meet market demands for technological advancements and capital expenditures and, in turn, restrains the growth of the electric two-wheeler lithium-ion battery management system market.
Due to the COVID-19 pandemic, commuters are mostly forgoing the usage of public transit. E-bikes are seen as a safe, practical, and cost-effective substitute. E-bikes are becoming more and more popular as a form of transportation, say industry insiders and e-bike producers including Rad Power Bike, VanMoof, and Lectric e-bike. China saw a spike in demand for electric bikes, reaching production levels of 25.48 million during the first 10 months of 2020, a year over year increase of 33.4%, according to the Ministry of Industry and Information Technology.
The scooters segment is estimated to have a lucrative growth, due to Lithium-ion batteries are crucial for electric scooters. Manufacturers in the electric scooter battery business are continually experimenting with these batteries due to the advantages of rechargeable types. Lithium-ion batteries are appropriate for large-capacity requirements due to their high density. It has been established that compared to SLA and NiMH batteries, lithium-ion batteries self-discharge at a slower pace.
The remote area electrification segment is anticipated to witness the highest CAGR growth during the forecast period, due to lithium-ion batteries will be used most frequently in the automotive industry. Customers have been drawn to these electric or hybrid vehicles by the growing knowledge of the advantages of battery-operated vehicles and the rising costs of gasoline and diesel, particularly in Asia Pacific, North America, and Europe. The industry that uses lithium-ion batteries most frequently is said to be consumer electronics. The adoption of lithium-ion batteries in various applications has increased as a result of the consumer electronics industry's ongoing development. They have a number of benefits, including greater safety, low pollution, and high-power capacity.
Europe is projected to hold the largest market share during the forecast period owing to fact that it is one of the top automobile-producing nations in Europe. The governments of many nations in the European region have heavily supported and invested in research and development (R&D) operations in the electricity sector over the past several years. As the production of automobiles rises, the need for energy storage solutions increases, the adoption of electric vehicles rises in response to environmental concerns, and there have been significant investments made in lithium-ion battery research projects, the demand for lithium-ion batteries in the European region is developing quickly.
Asia Pacific is projected to have the highest CAGR over the forecast period, owing to the markets for electric vehicles worldwide. Li-ion batteries are becoming rapidly embraced by the automotive industry. Additionally, due to the rising demand for smartphones, laptops, and other electronic devices in a number of other nations, including China, India, Japan, and Singapore.
Some of the key players profiled in the Electric Two-Wheeler Lithium-Ion Battery Management SystemMarket include: Yamaha Motor Co., Ltd., Mahindra & Mahindra Ltd, Shenzhen Litongwei Electronics Technology Co., Ltd.,Texas Instruments Incorporated, Sensata Technologies, Inc., Elithion Inc,Renesas Electronics Corporation, NXP Semiconductors N.V., Nuvation Energy, Jiangsu Xinri E-Vehicle Co., Ltd, Leclanche SA, Navitas System LLC, Analog Devices and Johnson Matthey PLC, Infineon Technologies AG, Lithium Balance A/S, Eberspaecher Vecture Inc., Xiamen Tmax Battery Equipments Limited and ION Energy Inc.
In September 2021, The Toshiba Corporation, Sojitz Corporation, and CBMM have entered into JDA (Joint Development Agreement) to commercially the next-generation lithium-ion batteries by using niobium titanium oxide for anode material.
In May 2021, The commercial vehicle manufacturer, Daimler Truck AG, and lithium-ion battery manufacturer, CATL, extended their existing partnership based on their shared vision of CO2 neutral electrified trucking.