市場調查報告書
商品編碼
1371901
2030 年工業自動化 3D 相機市場預測:按類型、技術、用途和地區分類的全球分析3D Cameras for Industrial Automation Market Forecasts to 2030 - Global Analysis By Type (Line Scan Camera and Area Scan Camera), Technology, Application and By Geography |
根據 Stratistics MRC 的數據,2023 年工業自動化用 3D 相機的全球市值為 44 億美元,預計在預測期內將以 22.3% 的年複合成長率成長,到 2030 年達到 180 億美元。
各行業對自動化、品質保證和生產力提高的需求正在推動工業自動化市場中3D相機的穩定成長。 3D 相機在收集3D資料以實現工業製程中的精確檢測、物件辨識和缺陷檢測方面發揮關鍵作用。 3D相機應用於多種行業,包括汽車、航太、電子、製造、醫療、物流以及食品和飲料。
據印度品牌資產基金會 (IBEF) 稱,印度是全球第三大需求最大的製造地,到 2030 年有潛力出口價值超過 1 兆美元的商品。此類配合措施將推動製造業中的高速 3D 相機市場。
3D 相機擴大應用於機器人和無人機技術。使用 3D 相機的機器人可以在製造和其他工業用途中更有效地操作和執行。機器人可以使用 3D 相機記錄有關其環境的大量資訊,使它們能夠以更高的精度和精確度執行困難的任務。在工業用途中,您可以更有效率、更精簡、更安全地工作。隨著工業機器人在3D影像處理中的引入,對3D相機的需求將會增加。
3D 相機採用先進技術,包括專用感測器、光學元件和影像處理工具。這些零件旨在以高解析度和精度準確擷取 3D資料。開發和完善 3D 相機技術需要大量的研發成本。這些成本必須由製造商收回,這可能導致產品價格上漲。一些 3D 相機適合在惡劣條件下工作,例如寒冷地區或危險情況。在這些條件下與相機設計相關的成本通常很高。
協作機器人上的 3D 攝影機可提高其感官和感知能力。借助該攝影機,協作機器人可以從三個維度觀察周圍環境,從而提高其了解周圍環境、識別事物和避開障礙物的能力。協作機器人的主要優點之一是它們可以與人類一起安全地工作。 3D 相機在確保這種安全方面發揮著至關重要的作用。協作機器人配備 3D 相機,非常適合需要精度和用途的拾放任務。這些機器人可以準確定位和抓取各種尺寸和形狀的物體,使其在運輸、倉儲和製造等領域發揮作用,創造廣泛的市場成長機會。
許多 3D 相機技術在精確記錄 3D資料的範圍和景深方面都有限制。相機可能無法準確捕捉太近或太遠的物體,通常會犧牲精度或需要專門的硬體來增加範圍。對於需要即時或非常快速處理的應用程式來說,某些 3D 相機系統可能無法足夠快地收集資料。此限制可能會影響自動化組裝和物件追蹤任務。相機產生的大量 3D資料會顯著降低自動化系統的處理能力。
疫情導致電子商務激增,導致倉庫和配送中心的自動化需求激增。這增加了對機器人、庫存管理和物流中使用的 3D 相機的需求。醫療保健中的遠端醫療、病患監測和體溫檢查等應用均使用 3D 攝影機。此外,3D掃描技術也被用於COVID-19藥物和疫苗的研究和製造。這次疫情為多個產業帶來了自動化的價值,它減少了對人力的需求,加強了社交距離,並確保了經濟的連續性。因此,3D 相機和其他自動化技術的使用正在增加。
線掃描相機領域預計將出現良好的成長。隨著許多行業對自動化需求的增加以及品管需求的增加,工業自動化中線掃描相機的市場正在穩步擴大。線掃描相機廣泛應用於生產和檢測過程。線掃描相機已成為汽車、電子、製藥、食品和飲料、品管、缺陷檢測和流程最佳化領域的重要組成部分。線掃描相機製造商經常提供不同線長、光譜靈敏度和介面選項等客製化服務來推動市場發展。
預計工業檢測領域在預測期內的年複合成長率最高。因為在企業檢查中,會使用3D相機配合各種技術來記錄3D資料。常見的方法包括飛行時間 (TOF)、結構光、雷射三角測量和立體視覺。每種技術都有其優點,並且根據特定應用的要求選擇最好的技術。工業檢測 3D 相機的兩個主要用途是控制和品質保證。這些相機可以檢測製造產品中的缺陷、錯誤和變化。使用 3D 相機進行無損檢測使製造商能夠檢查材料和零件的品質,而無需承擔損壞的風險。這對於航太以及石油、天然氣行業非常有用。因此,上述所有要素都在推動市場成長。
由於 3D 相機在虛擬實境 (VR)、擴增實境(AR)、機器人和工業自動化領域的使用顯著成長,亞太地區預計將在預測期內佔據最大的市場佔有率。 。由於技術進步、對先進成像解決方案的需求不斷增加以及對更準確和詳細的空間資料的需求不斷成長,3D 相機的使用正在擴大。因此,該地區可能將繼續成為 3D 相機領域公司的重要市場,為未來年度的擴張和創新提供廣闊的前景。
由於製造、物流和品管領域對自動化解決方案的需求正在推動 3D 視覺系統的採用,預計歐洲在預測期內將出現最高的年複合成長率。多家歐洲和國際公司正在推動工業自動化 3D 相機市場的發展。競爭推動了創新和創造更經濟的解決方案。隨著東歐部門實現製造業和物流業現代化,他們也利用3D相機技術實現工業自動化,將市場擴展到西歐以外。
According to Stratistics MRC, the Global 3D Cameras for Industrial Automation Market is accounted for $4.4 billion in 2023 and is expected to reach $18.0 billion by 2030 growing at a CAGR of 22.3% during the forecast period. The demand for automation, quality assurance, and increased productivity in a variety of industries has been propelling the steady growth of the 3D camera market in industrial automation. In order to enable accurate measurements, object recognition, and defect detection in industrial processes, 3D cameras play a critical role in the collection of three-dimensional data. Many different industries use 3D cameras, including the automotive, aerospace, electronics, manufacturing, health care, logistics, and food & beverage sectors.
According to India Brand Equity Foundation (IBEF), India is the world's third most demanding manufacturing location, with the potential to export commodities worth over USD 1 trillion by 2030. Such initiatives will drive the market for high-speed 3D cameras in manufacturing sectors.
3D cameras are increasingly being used in robotics and drone technology. Robotics that uses 3D cameras can perform and operate more effectively in manufacturing and other industrial applications. Robots can be taught to carry out difficult jobs more precisely and accurately by employing 3D cameras to record extensive information about the environment. In industrial contexts, this can result in more effectiveness, less waste, and higher safety. The demand for 3D cameras will increase with the installation of industrial robots in 3D imaging.
Advanced technology is used by 3D cameras, including specialized sensors, optics, and picture processing tools. These parts are designed to accurately capture three-dimensional data with high resolution and precision. Significant research and development expenditures are necessary for developing and perfecting 3D camera technology. These expenses must be recovered by the manufacturers, which may lead to higher product pricing. Some 3D cameras are made to function in difficult conditions, such chilly temperatures or perilous circumstances. Costs associated with designing cameras under these conditions are frequently costs higher.
3D cameras on collaborative robots have increased their sense-making and perception capacities. Cobots can see their surroundings in three dimensions thanks to these cameras, which improve their ability to comprehend their surroundings, recognize things, and avoid impediments. One of cobots' main benefits is that they can work securely alongside people. An essential part of ensuring this safety is played by 3D cameras. Cobots with 3D cameras are ideal for pick-and-place operations that call for accuracy and versatility. These robots are useful in sectors including transportation, warehousing, and manufacturing because they can precisely locate and grab things of various sizes and forms which creates wide range of opportunities for the growth of the market.
The range or depth of field that many 3D camera technologies can accurately record 3D data is constrained. Too-near or too-far objects may not be accurately caught by the camera this accuracy must frequently be sacrificed or specialist hardware is needed to increase the range. Some 3D camera systems might not be able to gather data quickly enough for applications that need real-time or extremely fast processing. This restriction may have an impact on automated assembly or object tracking tasks. The processing power of the automation system may be severely taxed by the massive amount of 3D data that cameras produce.
The demand for automation in warehouses and distribution hubs surged as a result of the pandemic's spike in e-commerce. This increased demand for 3D cameras used in robotics, inventory control, and logistics. Applications like telemedicine, patient monitoring, and temperature checking in healthcare have all used 3D cameras. Additionally, 3D scanning technologies were employed in the study and creation of COVID-19 medicines and vaccines. The epidemic brought to light for several industries the value of automation in lowering the need for human labour, preserving social distance, and assuring economic continuity. Due to this, the use of 3D cameras and other automation technologies has increased.
The line scan camera segment is estimated to have a lucrative growth, because of the rising need for automation and the need for quality control across numerous industries, the market for line scan cameras in industrial automation has been expanding steadily. In production and inspection procedures, line scan cameras have been extensively used. In sectors like automotive, electronics, pharmaceuticals, food and beverage, and quality control, defect detection, and process optimization, they were essential. Manufacturers of line scan cameras frequently offered customization choices, such as various line lengths, spectrum sensitivity, and interface options, to satisfy particular application requirements which are driving the market.
The industrial inspection segment is anticipated to witness the highest CAGR growth during the forecast period, as enterprise examination different technologies are used by 3D cameras to record 3D data. Time-of-flight (TOF), structured light, laser triangulation, and stereo vision are frequently used methods. Each technology offers a benefit, and the best one is picked based on the requirements of the particular application. Control and guarantee of quality are two of the main applications of industrial inspection 3D cameras. These cameras are capable of spotting flaws, errors, and variances in manufactured goods. Non-destructive testing, which uses 3D cameras, enables producers to examine the quality of materials and components without risking damage. This is very useful for the aerospace and oil and gas industries. Hence all the above factors propel the market growth.
Asia Pacific is projected to hold the largest market share during the forecast period owing to the usage of 3D cameras in fields including virtual reality (VR), augmented reality (AR), robotics, and industrial automation has grown significantly in the Asia Pacific area. The use of 3D cameras is expanding, driven by technical improvements, the demand for advanced imaging solutions is rising, and there is an increasing desire for more precise and detailed spatial data. As a result, the area will probably continue to be a significant market for businesses engaged in the 3D camera sector, offering excellent prospects for expansion and innovation in the years to come.
Europe is projected to have the highest CAGR over the forecast period, owing to the adoption of 3D vision systems was being driven by the desire for automation solutions in manufacturing, logistics, and quality control. The market for 3D cameras for industrial automation was active with several European and international businesses. Innovation and the creation of more economical solutions were being driven by competition. Eastern European nations were also utilizing 3D camera technology for industrial automation as they modernized their manufacturing and logistics sectors, expanding the market beyond Western Europe.
Some of the key players profiled in the 3D Cameras for Industrial Automation Market include: Basler, Zivid, Cognex Corporation, IDS, Balluff, Mech-Mind, Sony Corp., Canon Inc., Samsung Electronics Co., Ltd, GoPro, Inc., FUJIFILM Corp, Eastman Kodak Company, Orbbec 3D Technology International, Inc., LG Electronics and Nikon Corp
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