市場調查報告書
商品編碼
1394964
ISOBUS 組件的全球市場(2023-2028):按產品、應用、地區/國家進行分析、預測和供應鏈分析ISOBUS Component Market - A Global and Regional Analysis: Focus on Product and Application, Supply Chain Analysis, and Country Analysis - Analysis and Forecast, 2023-2028 |
全球ISOBUS零件市場規模預計將從2022年的7.143億美元成長到2028年的12.8億美元,預測期內年複合成長率為10.49%。
由於農業中擴大採用智慧農業技術,全球 ISOBUS 組件市場正在顯著成長。隨著農業相關企業採用 ISOBUS 和拓普康的 ISOBUS 解決方案,大規模農業營運將受益於增強的連接性和互通性。隨著智慧農業技術的發展,市場的發展軌跡與農業物聯網日益成長的需求同步。
主要市場統計數據 | |
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預測期 | 2023-2028 |
2023年評估 | 7.8億美元 |
2028年預測 | 12.8億美元 |
年複合成長率 | 10.49% |
從應用來看,在規模化農業、農產品企業、智慧農業的推動下,曳引機備受關注。透過利用農業物聯網、智慧農業技術和工藝,ISOBUS組件在提高農業效率和精準度方面發揮至關重要的作用。這種整合解決了智慧數位位農業不斷發展的格局,使您能夠透過資料主導的見解和遠端資訊處理來最佳化營運並推動永續農業。
就產品而言,電控系統(ECU) 在快速發展的智慧農業產業中尤其發揮核心作用,且需求不斷增加。 ISOBUS 技術的整合,特別是與 Topcon ISOBUS 等頂級解決方案相結合,代表了農業和工業領域的重大進步。這種需求激增在大型農業、農產品企業和農民中尤為明顯,反映了智慧農業技術和技術的普及。農業物聯網和智慧農業技術的相互作用凸顯了 ISOBUS 組件的變革性影響,並將其定位為智慧數位農業實踐的重要推動者。
本報告調查了全球ISOBUS 組件市場,並提供了市場背景和概述、對市場成長的各種影響因素的分析、正在進行的計劃、專利趨勢、市場規模趨勢和預測、各個細分市場/地區/它總結了按主要領域進行的詳細分析。國家、競爭形勢、主要企業分析等
“Global ISOBUS Component Market Expected to Reach $1.28 Billion by 2028.”
The global ISOBUS component market is experiencing substantial growth, driven by the increasing adoption of smart farming technologies within the agriculture industry. As agribusiness companies embrace ISOBUS and Topcon ISOBUS solutions, large-scale farming operations benefit from enhanced connectivity and interoperability. The market's trajectory aligns with the rising demand for IoT in agriculture as smart farming techniques gain prominence. The global ISOBUS component industry is poised for expansion, with a robust forecast indicating significant market size growth. This evolution underscores the pivotal role of ISOBUS technology in advancing digital farming practices, marking a transformative phase in the intersection of agriculture and industry.
KEY MARKET STATISTICS | |
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Forecast Period | 2023 - 2028 |
2023 Evaluation | $0.78 Billion |
2028 Forecast | $1.28 Billion |
CAGR | 10.49% |
In 2022, the global ISOBUS component market reached a valuation of $714.3 million. Over the forecast period 2023-2028, the market is projected to exhibit a CAGR of 10.49%, ultimately reaching a value of $1.28 billion by 2028.
The global ISOBUS component market exhibits robust applications across the agriculture industry, particularly in tractors, implements and attachments, data analysis, and telematics. With a notable surge in demand, tractors emerge as a focal point, driven by large-scale farming, agribusiness companies, and the smart farming industry. Leveraging IoT for agriculture, smart farming technology, and techniques, ISOBUS components play a pivotal role in enhancing efficiency and precision in the farm industry. This integration caters to the evolving landscape of smart digital farming, where data-driven insights and telematics empower agribusinesses to optimize operations and drive sustainable agricultural practices.
The global ISOBUS component market encompasses a comprehensive suite of precision agriculture solutions, including ISOBUS displays, universal terminals (UTs), section control modules (SCMs), electronic control units (ECUs), and ISOBUS software. Notably, electronic control units (ECUs) emerge as the focal point of heightened demand, especially within the context of the rapidly evolving smart farming industry. The integration of ISOBUS technology, particularly in conjunction with top-tier solutions such as Topcon ISOBUS, signifies a pivotal advancement in the agriculture and industry sectors. This surge in demand is particularly pronounced in large-scale farming, agribusiness companies, and farm industry, reflecting the pervasive adoption of smart farming techniques and technologies. The intersection of IoT for agriculture and smart farming technology underscores the transformative impact of ISOBUS components, positioning them as critical enablers for smart digital farming practices. As agribusiness continues to embrace cutting-edge solutions, the market for ISOBUS components is poised for sustained growth, reaffirming its pivotal role in advancing precision agriculture on a global scale.
The ISOBUS component industry in Europe is propelled by several key factors. Firstly, the increasing emphasis on precision agriculture to optimize farm operations has driven demand. For instance, the adoption of ISOBUS-enabled implements by European farmers, such as advanced plowing systems or precision seeders, illustrates this trend. Additionally, regulatory support for sustainable farming practices further accelerates the uptake of ISOBUS technology, as seen in initiatives promoting efficient resource utilization and reduced environmental impact across European agricultural landscapes.
A fundamental aspect of grasping ISOBUS frameworks for farmers lies in the seamless plug-and-play functionality and cross-manufacturer compatibility. When integrating a new implement with a tractor, the communication process must occur autonomously, without user intervention, aligning with the time-sensitive nature of farming operations. The evolution of the ISOBUS standard is driven by the imperative for swift plug-and-play capabilities, crucial for maintaining operational efficiency and profitability in the agriculture industry. As the ISOBUS standard gains traction, collaborative efforts among leading agricultural equipment manufacturers, exemplified by the strategic partnership between Kverneland Group and Mazzotti S.r.l., result in end user products with shared ports and compatibility. This collaborative approach ensures that agricultural machinery from different manufacturers can seamlessly integrate, promoting cost-effectiveness and flexibility for farmers in the dynamic landscape of smart farming technology and the global ISOBUS component industry.
A staggering 92% of malware attacks are channeled through emails, intensifying cyber threats as the internet user base expands. In September 2021, Russian hackers executed a ransomware attack on New Cooperative in Fort Dodge, demanding $5.9 million to unlock crucial computer networks managing food supply chains for millions of livestock. This incident underscores the vulnerability of essential sectors, such as agriculture, to cyber assaults. ISOBUS components, integral to large-scale farming and smart farming technology, face escalating risks. With data-intensive operations, ISOBUS components become lucrative targets for hackers, potentially resulting in significant monetary and operational losses. Kereval, a software testing and engineering firm, highlights vulnerabilities in ISOBUS components, emphasizing the urgent need for robust regulations to safeguard against data breaches and cyber threats in the global ISOBUS component industry.
Tailoring and specializing augment the utility of ISOBUS technology for farmers in pursuit of customized solutions to enhance their agricultural practices. The global ISOBUS component industry has the capacity to address distinct agricultural niches through the development of bespoke solutions. An illustration of this is evident in the creation of components finely tuned for specific crops or regional requirements, thereby establishing a dedicated customer base. This adaptability resonates strongly with the diverse landscape of the agriculture and industry sectors, especially in the context of large-scale farming and the broader agribusiness domain. The strategic integration of ISOBUS technology, exemplified by top-tier solutions such as Topcon ISOBUS, aligns seamlessly with the evolving paradigm of smart farming, IoT for agriculture, and overarching trend toward smart digital farming techniques within the agriculture industry.
Product/Innovation Strategy: In the realm of ISOBUS components, technological advancements are transforming agricultural landscapes. ISOBUS components and solutions utilize diverse technologies such as IoT sensors, drones, and data analytics. These tools offer precise insights into crop health, optimizing irrigation, pest management, and harvest times. Innovations such as satellite imaging and remote sensing provide a holistic view of fields, empowering farmers to make informed decisions. The market encompasses a range of solutions, from real-time monitoring platforms to AI-driven predictive analysis, enabling farmers to enhance productivity and reduce resource wastage significantly.
Growth/Marketing Strategy: The ISOBUS component market has witnessed remarkable growth strategies by key players. Business expansions, collaborations, and partnerships have been pivotal. Companies are venturing into global markets, forging alliances, and engaging in research collaborations to enhance their technological prowess. Collaborative efforts between tech companies and agricultural experts are driving the development of cutting-edge monitoring tools. Additionally, strategic joint ventures are fostering the integration of diverse expertise, amplifying the market presence of these solutions. This collaborative approach is instrumental in developing comprehensive, user-friendly, and efficient ISOBUS components and agricultural systems.
Competitive Strategy: In the competitive landscape of ISOBUS components, manufacturers are diversifying their product portfolios to cover various crops and farming practices. Competitive benchmarking illuminates the strengths of market players, emphasizing their unique offerings and regional strengths. Partnerships with research institutions and agricultural organizations are driving innovation.
The primary sources involve the ISOBUS component and agriculture industry experts and stakeholders such as data suppliers, platform developers, and service providers. Respondents such as vice presidents, CEOs, marketing directors, and technology and innovation directors have been interviewed to verify this research study's qualitative and quantitative aspects.
The key data points taken from primary sources include:
This research study involves the usage of extensive secondary research, directories, company websites, and annual reports. It also makes use of databases, such as Hoovers, Bloomberg, Businessweek, and Factiva, to collect useful and effective information for an extensive, technical, market-oriented, and commercial study of the global market. In addition to the data sources, the study has been undertaken with the help of other data sources and websites, such as www.euspa.europa.eu/and www.worldbank.org/en/home.
Secondary research was done to obtain crucial information about the industry's value chain, revenue models, the market's monetary chain, the total pool of key players, and the current and potential use cases and applications.
The featured companies have been meticulously chosen, drawing insights from primary experts and thorough evaluations of company coverage, product offerings, and market presence.
Company Type 1: Public Companies
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Company Type 2: Private Companies
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