市场调查报告书
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2030 年高高光谱影像市场预测:按产品、技术、应用、最终用户和地区进行的全球分析Hyperspectral Imaging Market Forecasts to 2030 - Global Analysis By Product (Accessories, Cameras and Other Products), Technology, Application, End User and By Geography |
根据Stratistics MRC预测,2023年全球高光谱影像市场规模将达168亿美元,预计2030年将达到516亿美元,预测期内复合年增长率为17.4%。
高光谱影像(HSI) 是一种无损成像技术,可撷取和处理整个电磁频谱的资讯。高光谱影像可以透过分析影像中不同材料和物质的频谱特征来提供对所观察物体或区域的成分、分布和特性的有价值的见解,并且可用于各种科学、工业和商业应用。领域的强大工具。
根据美国癌症协会估计,2023年美国将新增93.5万名女性癌症病例。
农业领域需求增加
由于该市场能够为作物监测、疾病检测和精密农业提供详细的频谱信息,因此在农业领域的需求量很大。该技术使农民能够评估作物健康状况、优化资源分配并提高收成品质。对永续农业实践的日益关注和对有效害虫管理的需求进一步推动了高光谱遥测影像解决方案的采用。因此,农业领域对这种先进成像技术的整合大幅增加。
认识有限
高光谱遥测影像是遥感探测领域一项强大的技术,但许多人仍然不了解。儘管在农业、医疗保健和环境监测等许多行业提供了无与伦比的洞察力,但许多潜在用户并不了解其功能。这种认识的缺乏是由于对其好处和解释的复杂性教育不足。这些都是限制市场成长的因素。
技术进步
更小的传感器、更高的频谱分辨率以及与人工智慧演算法的整合等技术创新正在提高图像品质和分析能力。此外,资料处理技术的进步使得高光谱遥测资料的即时分析和解释成为可能,从而在农业、环境监测、医疗保健等领域得到应用。此外,经济高效的可携式高光谱影像设备的开发正在扩大可及性,并推动市场的进一步采用和成长。
设备高成本
在高光谱影像市场,设备的高成本是许多潜在用户和研究人员的主要进入障碍。该成本不仅包括高光谱影像系统的初始购买成本,还包括与维护、校准和升级相关的持续成本。高光谱遥测成像技术主要局限于资金雄厚的研究机构、政府机构和大公司,阻碍了其在各行业的普及和应用。
COVID-19 疫情对市场产生了重大影响,导致供应链中断、计划延误和投资减少。由于旅行和业务限制,农业、医疗保健和环境监测等行业的招聘放缓。然而,疫情凸显了遥感探测技术在监测和监测应用中的重要性,重新激发了人们对用于疾病检测、食品品质检测和环境监测的高光谱遥测影像解决方案的兴趣和投资,而这一点最初已经放缓。
预计配件细分市场在预测期内将成为最大的细分市场
配件部分预计将在预测期内成为最大的部分。这些配件包括专为高光谱遥测资料收集、处理和分析而客製化的专用镜头、滤光片、照明来源、相机和软体工具。此外,安装硬体、校准目标和资料储存解决方案也是不可或缺的配件。这些组件有助于优化光谱分辨率、空间精度和整体系统可靠性,促进从农业和环境监测到医疗保健和国防的各种应用。
预计医疗诊断领域在预测期内复合年增长率最高
预计医疗诊断领域在预测期内复合年增长率最高。高光谱影像能够在较宽的波长范围内获取详细的频谱信息,有助于识别指示各种疾病状态的细微生化和型态变化。该技术在非侵入性疾病检测、表征和监测方面具有巨大潜力,透过提供对组织成分和病理学的快速、准确和全面的了解,彻底改变了医疗诊断。
由于各领域的应用不断增加,预计北美在预测期内将占据最大的市场占有率。这种先进的成像技术可以根据物质的光谱特征进行详细分析和识别,在农业、环境监测、国防和医疗保健产业中具有很高的实用性。该地区在研发方面的优势,加上主要市场参与者的存在和不断增加的政府倡议,进一步支持了市场扩张。
预计亚太地区在预测期内将维持最高的复合年增长率。高光谱影像提供了根据物体和材料的光谱特征来识别和分析物体和材料的出色能力,从而可以准确检测感兴趣区域的异常和变化。该技术的高灵敏度和精确度使其对于精密农业、医疗保健疾病检测、污染监测和监视等应用非常有用,推动了其在全部区域的采用和扩展。
According to Stratistics MRC, the Global Hyperspectral Imaging Market is accounted for $16.8 billion in 2023 and is expected to reach $51.6 billion by 2030 growing at a CAGR of 17.4% during the forecast period. Hyperspectral imaging (HSI) is a non-destructive imaging technique that involves capturing and processing information from across the electromagnetic spectrum. By analyzing the spectral signatures of different materials or substances within an image, hyperspectral imaging can provide valuable insights into the composition, distribution, and properties of objects or areas under observation, making it a powerful tool in various scientific, industrial, and commercial fields.
According to the American Cancer Society, in 2023, it was estimated that there would be nearly 935 thousand new cancer cases among women in the United States.
Increased demand in agriculture
The market is experiencing heightened demand within agriculture due to its ability to provide detailed spectral information for crop monitoring, disease detection, and precision farming. This technology enables farmers to assess crop health, optimize resource allocation, and enhance yield quality. The increasing focus on sustainable agricultural practices and the need for efficient pest management further propel the adoption of hyperspectral imaging solutions. As a result, the agricultural sector is witnessing a significant surge in the integration of this advanced imaging technology.
Limited awareness
Hyperspectral imaging, a powerful technology in remote sensing, remains relatively unknown to many. Despite offering unparalleled insights across numerous industries such as agriculture, healthcare, and environmental monitoring, many potential users are unaware of its capabilities. This lack of awareness stems from insufficient education on its benefits and complexities in interpretation. These are the factors restraining the growth of the market.
Advancements in technology
Innovations such as miniaturization of sensors, enhanced spectral resolution, and integration with artificial intelligence algorithms have improved image quality and analysis capabilities. Additionally, advancements in data processing techniques have enabled real-time analysis and interpretation of hyperspectral data, leading to applications in agriculture, environmental monitoring, healthcare, and beyond. Furthermore, the development of cost-effective and portable hyperspectral imaging devices has expanded accessibility, driving further adoption and growth in the market.
High cost of equipment
The high cost of equipment in the market presents a significant barrier to entry for many potential users and researchers. This cost encompasses not only the initial purchase of hyperspectral imaging systems but also ongoing expenses related to maintenance, calibration, and upgrades. Access to hyperspectral imaging technology is limited primarily to well-funded research institutions, government agencies, and large corporations, hindering its widespread adoption and application across various industries.
The COVID-19 pandemic significantly impacted the market, causing disruptions in supply chains, delayed projects, and reduced investments. With restrictions on travel and operations, industries such as agriculture, healthcare, and environmental monitoring experienced slowdowns in adoption. However, the pandemic also highlighted the importance of remote sensing technologies for monitoring and surveillance applications, driving renewed interest and investments in hyperspectral imaging solutions for disease detection, food quality inspection, and environmental monitoring, albeit at a slower pace initially.
The accessories segment is expected to be the largest during the forecast period
The accessories segment is expected to be the largest during the forecast period. These accessories include specialized lenses, filters, illumination sources, cameras, and software tools tailored for hyperspectral data acquisition, processing, and analysis. Additionally, mounting hardware, calibration targets, and data storage solutions are essential accessories. These components contribute to optimizing spectral resolution, spatial accuracy, and overall system reliability, facilitating diverse applications ranging from agriculture and environmental monitoring to healthcare and defense.
The medical diagnostics segment is expected to have the highest CAGR during the forecast period
The medical diagnostics segment is expected to have the highest CAGR during the forecast period. Hyperspectral imaging enables the capture of detailed spectral information across a wide range of wavelengths, facilitating the identification of subtle biochemical and morphological changes indicative of various medical conditions. This technology holds immense potential for non-invasive disease detection, characterization, and monitoring, revolutionizing medical diagnostics by offering rapid, accurate, and comprehensive insights into tissue composition and pathology.
North America is projected to hold the largest market share during the forecast period due to increasing applications across various sectors. This advanced imaging technology enables detailed analysis and identification of materials based on their spectral signatures, making it valuable in agriculture, environmental monitoring, defence, and healthcare industries. The region's dominance in research and development, coupled with the presence of key market players and growing government initiatives, further fuels market expansion.
Asia Pacific is projected to hold the highest CAGR over the forecast period. Hyperspectral imaging offers superior capabilities in identifying and analyzing objects or materials based on their spectral signature, enabling precise detection of anomalies or changes in target areas. This technology's high sensitivity and accuracy make it invaluable for applications like precision agriculture, disease detection in healthcare, pollution monitoring, and surveillance, driving its adoption and expansion throughout the region.
Key players in the market
Some of the key players in Hyperspectral Imaging market include ChemImage Corporation, Surface Optics Corporation, Applied Spectral Imaging Inc., Galileo Group Inc., Headwall Photonics Inc., Norsk Elektro Optikk AS, BaySpec Inc., Spectral Imaging Ltd., Telops Inc., Specim Spectral Imaging Ltd, Brimrose Corporation, Cubert GmbH, Corning Inc., Resonon Inc. and SpecTIR LLC.
In December 2023, SPECIM recently launched an upgraded FX50 middle wave infrared hyperspectral camera model. The camera covers the full mid-wave infrared spectral range of 2.7 - 5.3 μm and has a 640-pixel spatial resolution, 35 nm spectral resolution, 30 μm adequate pixel size, and a maximum frame rate of 377 fps.
In September 2022, Resonon, a hyperspectral imaging company, unveiled two new hyperspectral imagers, the Pika IR-L and Pika IR-L+, operating in the NIR range (925 - 1700 nm). These imagers offer a smaller form factor, approximately three times lighter, while delivering higher spectral resolution compared to previous generation NIR imagers.