¼¼°èÀÇ ¼±¹Ú¿ë ¿£Áø ¸ð´ÏÅ͸µ ½Ã½ºÅÛ ½ÃÀå
Marine Engine Monitoring Systems
»óǰÄÚµå : 1559515
¸®¼­Ä¡»ç : Global Industry Analysts, Inc.
¹ßÇàÀÏ : 2024³â 09¿ù
ÆäÀÌÁö Á¤º¸ : ¿µ¹® 182 Pages
 ¶óÀ̼±½º & °¡°Ý (ºÎ°¡¼¼ º°µµ)
US $ 5,850 £Ü 8,301,000
PDF (Single User License) help
PDF º¸°í¼­¸¦ 1¸í¸¸ ÀÌ¿ëÇÒ ¼ö ÀÖ´Â ¶óÀ̼±½ºÀÔ´Ï´Ù. Àμâ´Â °¡´ÉÇϸç Àμ⹰ÀÇ ÀÌ¿ë ¹üÀ§´Â PDF ÀÌ¿ë ¹üÀ§¿Í µ¿ÀÏÇÕ´Ï´Ù.
US $ 17,550 £Ü 24,905,000
PDF (Global License to Company and its Fully-owned Subsidiaries) help
PDF º¸°í¼­¸¦ µ¿ÀÏ ±â¾÷ÀÇ ¸ðµç ºÐÀÌ ÀÌ¿ëÇÒ ¼ö ÀÖ´Â ¶óÀ̼±½ºÀÔ´Ï´Ù. Àμâ´Â °¡´ÉÇϸç Àμ⹰ÀÇ ÀÌ¿ë ¹üÀ§´Â PDF ÀÌ¿ë ¹üÀ§¿Í µ¿ÀÏÇÕ´Ï´Ù.


Çѱ۸ñÂ÷

ÇØ¾ç ¿£Áø ¸ð´ÏÅ͸µ ½Ã½ºÅÛ ¼¼°è ½ÃÀå ±Ô¸ð´Â 2030³â±îÁö 8¾ï 3,490¸¸ ´Þ·¯¿¡ ´ÞÇÒ °ÍÀ¸·Î Àü¸Á

2023³â 6¾ï 2,950¸¸ ´Þ·¯·Î ÃßÁ¤µÇ´Â ¼±¹Ú¿ë ¿£Áø ¸ð´ÏÅ͸µ ½Ã½ºÅÛ ¼¼°è ½ÃÀåÀº 2023³âºÎÅÍ 2030³â±îÁö ¿¬Æò±Õ 4.1% ¼ºÀåÇÏ¿© 2030³â¿¡´Â 8¾ï 3,490¸¸ ´Þ·¯¿¡ À̸¦ °ÍÀ¸·Î ¿¹»óµË´Ï´Ù. ÀÌ º¸°í¼­¿¡¼­ ºÐ¼®ÇÑ ºÎ¹® Áß ÇϳªÀÎ ÃßÁø ¿£ÁøÀº CAGR 4.0%¸¦ ±â·ÏÇÏ¿© ºÐ¼® ±â°£ Á¾·á ½ÃÁ¡¿¡ 5¾ï 1,970¸¸ ´Þ·¯¿¡ À̸¦ °ÍÀ¸·Î ¿¹»óµË´Ï´Ù. º¸Á¶ ¿£Áø ºÎ¹®ÀÇ ¼ºÀå·üÀº ºÐ¼® ±â°£ µ¿¾È CAGR 4.4%·Î ÃßÁ¤µË´Ï´Ù.

¹Ì±¹ ½ÃÀåÀº 1¾ï 6,680¸¸ ´Þ·¯·Î ÃßÁ¤, Áß±¹Àº CAGR 6.3%·Î ¼ºÀå Àü¸Á

¹Ì±¹ÀÇ ¼±¹Ú¿ë ¿£Áø ¸ð´ÏÅ͸µ ½Ã½ºÅÛ ½ÃÀåÀº 2023³â 1¾ï 6,680¸¸ ´Þ·¯¿¡ ´ÞÇÒ °ÍÀ¸·Î ÃßÁ¤µË´Ï´Ù. ¼¼°è 2À§ÀÇ °æÁ¦ ´ë±¹ÀÎ Áß±¹Àº 2023³âºÎÅÍ 2030³â±îÁö ¿¬Æò±Õ 6.3%ÀÇ ¼ºÀå·üÀ» º¸À̸ç 2030³â¿¡´Â 1¾ï 7,630¸¸ ´Þ·¯ ±Ô¸ð¿¡ µµ´ÞÇÒ °ÍÀ¸·Î ¿¹»óµË´Ï´Ù. ´Ù¸¥ ÁÖ¸ñÇÒ ¸¸ÇÑ Áö¿ª ½ÃÀåÀ¸·Î´Â ÀϺ»°ú ij³ª´Ù°¡ ÀÖÀ¸¸ç, ºÐ¼® ±â°£ µ¿¾È °¢°¢ 2.6%¿Í 3.4%ÀÇ ¿¬Æò±Õ º¹ÇÕ ¼ºÀå·ü(CAGR)À» ³ªÅ¸³¾ °ÍÀ¸·Î ¿¹»óµË´Ï´Ù. À¯·´¿¡¼­´Â µ¶ÀÏÀÌ 3.2%ÀÇ ¿¬Æò±Õ º¹ÇÕ ¼ºÀå·ü(CAGR)·Î ¼ºÀåÇÒ °ÍÀ¸·Î ¿¹»óµË´Ï´Ù.

¼¼°è ¼±¹Ú¿ë ¿£Áø ¸ð´ÏÅ͸µ ½Ã½ºÅÛ ½ÃÀå - ÁÖ¿ä µ¿Çâ ¹× ÃËÁø¿äÀÎ Á¤¸®

ÇØ¾ç ¿£Áø ¸ð´ÏÅ͸µ ½Ã½ºÅÛÀ̶õ?

¼±¹Ú ¿£Áø ¸ð´ÏÅ͸µ ½Ã½ºÅÛÀº ¼±¹Ú ¿£ÁøÀÇ °Ç°­ »óÅÂ¿Í ¼º´É¿¡ ´ëÇÑ ½Ç½Ã°£ µ¥ÀÌÅ͸¦ Á¦°øÇϱâ À§ÇØ ¼³°èµÈ Áß¿äÇÑ ±â¼úÀÔ´Ï´Ù. ÀÌ·¯ÇÑ ½Ã½ºÅÛÀº ¿Âµµ, ¾Ð·Â, ¿¬·á ¼Òºñ, ¹è±â°¡½º ¹èÃâ µî ´Ù¾çÇÑ ÆÄ¶ó¹ÌÅ͸¦ ¸ð´ÏÅ͸µÇÏ¿© ¿î¿µÀÚ°¡ È¿À²¼ºÀ» ³ôÀ̰í ÀáÀçÀûÀÎ ¿£Áø °íÀåÀ» ¹æÁöÇϱâ À§ÇØ Á¤º¸¿¡ ÀÔ°¢ÇÑ ÀÇ»ç°áÁ¤À» ³»¸± ¼ö ÀÖµµ·Ï Áö¿øÇÕ´Ï´Ù. ¼±¹Ú¿ë ¿£ÁøÀÇ º¹À⼺ÀÌ Áõ°¡ÇÔ¿¡ µû¶ó ÀÌ·¯ÇÑ ¸ð´ÏÅ͸µ ½Ã½ºÅÛÀº ÃÖÀûÀÇ ¼º´ÉÀ» À¯ÁöÇϰí, ¿î¿µ ºñ¿ëÀ» Àý°¨Çϸç, ¾ö°ÝÇÑ È¯°æ ±ÔÁ¦¸¦ ÁؼöÇϱâ À§ÇØ ÇʼöÀûÀÎ ¿ä¼Ò·Î ÀÚ¸® Àâ¾Ò½À´Ï´Ù. ¼±¹Ú¿ë ¿£Áø ¸ð´ÏÅ͸µ ½Ã½ºÅÛÀº ¿£ÁøÀÇ »óŸ¦ Áö¼ÓÀûÀ¸·Î ÆÄ¾ÇÇÏ¿© ºñ¿ëÀÌ ¸¹ÀÌ µå´Â ´Ù¿îŸÀÓÀ» ¹æÁöÇÏ°í ¼±¹ÚÀÇ ¼ö¸íÀ» ¿¬ÀåÇÏ´Â µî ÇØ¿î¾÷°è¿¡ ÇʼöÀûÀÎ ¿ä¼Ò·Î ÀÚ¸®¸Å±èÇϰí ÀÖ½À´Ï´Ù.

±â¼úÀÇ ¹ßÀüÀº ¼±¹Ú¿ë ¿£Áø ¸ð´ÏÅ͸µ ½Ã½ºÅÛÀ» ¾î¶»°Ô °³¼±Çϰí Àִ°¡?

±â¼úÀÇ ¹ßÀüÀº ¼±¹Ú¿ë ¿£Áø ¸ð´ÏÅ͸µ ½Ã½ºÅÛÀ» ´õ¿í È¿À²ÀûÀÌ°í ½Å·ÚÇÒ ¼ö ÀÖµµ·Ï Å©°Ô º¯È­½Ã۰í ÀÖ½À´Ï´Ù. »ç¹°ÀÎÅͳÝ(IoT) ÀåÄ¡¿Í Ŭ¶ó¿ìµå ÄÄÇ»ÆÃÀÇ ÅëÇÕÀº µ¥ÀÌÅÍ ¼öÁý ¹× ó¸® ¹æ½Ä¿¡ Çõ¸íÀ» ÀÏÀ¸ÄÑ ÀÛ¾÷ÀÚ°¡ ¿ø°ÝÀ¸·Î ½Ç½Ã°£À¸·Î ¿£ÁøÀ» ¸ð´ÏÅ͸µÇÒ ¼ö ÀÖ°Ô µÇ¾ú½À´Ï´Ù. ÷´Ü ¼¾¼­, AI ¹× ¸Ó½Å·¯´× ¾Ë°í¸®ÁòÀº ¿£Áø °íÀåÀ» À¯¹ßÇϱâ Àü¿¡ ÀáÀçÀûÀÎ ¹®Á¦¸¦ ½Äº°ÇÏ¿© ´Ù¿îŸÀÓ°ú ¼ö¸® ºñ¿ëÀ» Àý°¨ÇÏ´Â ¿¹Áöº¸ÀüÀ» °¡´ÉÇÏ°Ô ÇÕ´Ï´Ù. ¶ÇÇÑ, ÃֽЏð´ÏÅ͸µ ½Ã½ºÅÛÀº ¿¬·á È¿À²°ú ¹èÃâ·®À» ÃßÀûÇÒ ¼ö ÀÖ¾î IMO 2020 Ȳ ¹èÃâ·® ±ÔÁ¦¿Í °°ÀÌ Á¡Á¡ ´õ ¾ö°ÝÇØÁö´Â ȯ°æ ±ÔÁ¦¸¦ ÁؼöÇÒ ¼ö ÀÖµµ·Ï µ½½À´Ï´Ù. ÀÌ·¯ÇÑ ±â¼ú Çõ½ÅÀº ¿£Áø ¼º´ÉÀ» Çâ»ó½Ãų »Ó¸¸ ¾Æ´Ï¶ó ¼±¹Ú ¿î¿µÀÇ Àü¹ÝÀûÀÎ ¾ÈÀü°ú Áö¼Ó°¡´É¼ºÀ» Çâ»ó½Ãŵ´Ï´Ù.

ÇØ¾ç ¿£Áø ¸ð´ÏÅ͸µ ½Ã½ºÅÛ µµÀÔ ½Ã ¾î¶² ¾î·Á¿òÀÌ Àִ°¡?

¸¶¸° ¿£Áø ¸ð´ÏÅ͸µ ½Ã½ºÅÛ µµÀÔÀº ±× ÀåÁ¡¿¡µµ ºÒ±¸ÇÏ°í ¸î °¡Áö °úÁ¦°¡ ÀÖ½À´Ï´Ù. ±× Áß Çϳª´Â ±âÁ¸ ±â°ü ÀÎÇÁ¶ó¿ÍÀÇ ÅëÇÕÀÔ´Ï´Ù. ¶ÇÇÑ, ÀÌ·¯ÇÑ ¸ð´ÏÅ͸µ ½Ã½ºÅÛ¿¡¼­ »ý¼ºµÇ´Â ¹æ´ëÇÑ ¾çÀÇ µ¥ÀÌÅÍ´Â ¿î¿µÀÚ¸¦ ¾ÐµµÇÒ ¼ö ÀÖÀ¸¸ç, Á¤º¸¸¦ È¿°úÀûÀ¸·Î °ü¸®ÇÏ°í ºÐ¼®Çϱâ À§Çؼ­´Â Àü¹®ÀûÀÎ ¼ÒÇÁÆ®¿þ¾î¿Í ÀηÂÀÌ ÇÊ¿äÇÕ´Ï´Ù. ¶ÇÇÑ, ƯÈ÷ IoT Áö¿ø ½Ã½ºÅÛÀÌ È®»êµÊ¿¡ µû¶ó ÀáÀçÀûÀÎ »çÀ̹ö °ø°Ý¿¡ ´ëÇÑ ¿ì·Á°¡ Ä¿Áö¸é¼­ µ¥ÀÌÅÍ º¸¾ÈÀ» È®º¸ÇÏ´Â °Íµµ °úÁ¦ÀÔ´Ï´Ù. ¶ÇÇÑ, ÇØ¿î¾÷°è´Â ³ôÀº ºñ¿ë°ú ±³À°ÀÌ ÇÊ¿äÇϱ⠶§¹®¿¡ »õ·Î¿î ±â¼ú µµÀÔ¿¡ °ÅºÎ°¨À» º¸ÀÌ´Â °æ¿ì°¡ ¸¹¾Æ ÀÌ·¯ÇÑ Ã·´Ü ¸ð´ÏÅ͸µ ½Ã½ºÅÛ µµÀÔÀÌ ´õ¿í ´Ê¾îÁö°í ÀÖ½À´Ï´Ù.

ÇØ¾ç ¿£Áø ¸ð´ÏÅ͸µ ½Ã½ºÅÛ ½ÃÀåÀÇ ¼ºÀåÀº ¸î °¡Áö ¿äÀο¡ ÀÇÇØ ÀÌ·ç¾îÁý´Ï´Ù

¼±¹Ú ¿£Áø ¸ð´ÏÅ͸µ ½Ã½ºÅÛ ½ÃÀåÀÇ ¼ºÀåÀº ¾÷¹« È¿À²¼º¿¡ ´ëÇÑ ¿ä±¸ Áõ°¡, ¿¹Áöº¸Àü ±â¼úÀÇ ¹ßÀü, ȯ°æ ±ÔÁ¦ °­È­ µî ¿©·¯ °¡Áö ¿äÀο¡ ÀÇÇØ ÀÌ·ç¾îÁö°í ÀÖ½À´Ï´Ù. ÇØ¿î»çµéÀº ¿¬·áºñ Àý°¨°ú ¿£Áø ¼º´É Çâ»óÀ» À§ÇØ ³ë·ÂÇϰí ÀÖÀ¸¸ç, ¸ð´ÏÅ͸µ ½Ã½ºÅÛ µµÀÔÀÌ ÇʼöÀûÀÔ´Ï´Ù. ½Ç½Ã°£ ¸ð´ÏÅ͸µ, IoT, AI ±â¹Ý ºÐ¼®°ú °°Àº ±â¼ú Çõ½ÅÀº ¿£ÁøÀÇ °ÇÀü¼ºÀ» º¸´Ù Á¤È®ÇÏ°í ´Éµ¿ÀûÀ¸·Î °ü¸®ÇÒ ¼ö ÀÖ°Ô ÇÔÀ¸·Î½á ¼ö¿ä¸¦ ´õ¿í ÃËÁøÇϰí ÀÖ½À´Ï´Ù. ¶ÇÇÑ, ¹èÃâ°¡½º ¹× Áö¼Ó°¡´É¼º¿¡ ´ëÇÑ ±ÔÁ¦ ¾Ð·ÂÀ¸·Î ÀÎÇØ ¼±»çµéÀº ¿£Áø Ãâ·ÂÀ» ¸ð´ÏÅ͸µÇϰí Á¦¾îÇÏ´Â µ¥ µµ¿òÀÌ µÇ´Â ½Ã½ºÅÛÀ» µµÀÔÇϰí ÀÖ½À´Ï´Ù. ÀÌ·¯ÇÑ ¿äÀο¡ ´õÇØ ¼±¹ÚÀÇ °¡µ¿ Áß´Ü ½Ã°£À» ÃÖ¼ÒÈ­ÇÏ°í ¼±¹ÚÀÇ ¼ö¸íÀ» ÃÖ´ëÈ­ÇØ¾ß ÇÒ Çʿ伺ÀÌ ¼±¹Ú ¿£Áø ¸ð´ÏÅ͸µ ½Ã½ºÅÛ ½ÃÀåÀÇ Å« ¼ºÀåÀ» °¡¼ÓÇϰí ÀÖ½À´Ï´Ù.

Á¶»ç ´ë»ó ±â¾÷ ¿¹½Ã(ÃÑ 14°Ç)

¸ñÂ÷

Á¦1Àå Á¶»ç ¹æ¹ý

Á¦2Àå ÁÖ¿ä ¿ä¾à

Á¦3Àå ½ÃÀå ºÐ¼®

Á¦4Àå °æÀï

LSH
¿µ¹® ¸ñÂ÷

¿µ¹®¸ñÂ÷

Global Marine Engine Monitoring Systems Market to Reach US$834.9 Million by 2030

The global market for Marine Engine Monitoring Systems estimated at US$629.5 Million in the year 2023, is expected to reach US$834.9 Million by 2030, growing at a CAGR of 4.1% over the analysis period 2023-2030. Propulsion Engine, one of the segments analyzed in the report, is expected to record a 4.0% CAGR and reach US$519.7 Million by the end of the analysis period. Growth in the Auxiliary Engine segment is estimated at 4.4% CAGR over the analysis period.

The U.S. Market is Estimated at US$166.8 Million While China is Forecast to Grow at 6.3% CAGR

The Marine Engine Monitoring Systems market in the U.S. is estimated at US$166.8 Million in the year 2023. China, the world's second largest economy, is forecast to reach a projected market size of US$176.3 Million by the year 2030 trailing a CAGR of 6.3% over the analysis period 2023-2030. Among the other noteworthy geographic markets are Japan and Canada, each forecast to grow at a CAGR of 2.6% and 3.4% respectively over the analysis period. Within Europe, Germany is forecast to grow at approximately 3.2% CAGR.

Global Marine Engine Monitoring Systems Market - Key Trends & Drivers Summarized

What Are Marine Engine Monitoring Systems and How Do They Enhance Vessel Performance?

Marine engine monitoring systems are crucial technologies designed to provide real-time data on the health and performance of marine engines. These systems monitor various parameters such as temperature, pressure, fuel consumption, and emissions, enabling operators to make informed decisions that enhance efficiency and prevent potential engine failures. With the increasing complexity of modern marine engines, these monitoring systems have become indispensable for maintaining optimal performance, reducing operational costs, and ensuring compliance with stringent environmental regulations. By offering continuous insights into engine conditions, marine engine monitoring systems help prevent costly downtime and extend the lifespan of marine vessels, making them a vital component of the maritime industry.

How Are Technological Advancements Improving Marine Engine Monitoring Systems?

Technological advancements are significantly transforming marine engine monitoring systems, making them more efficient and reliable. The integration of Internet of Things (IoT) devices and cloud computing has revolutionized how data is collected and processed, allowing operators to monitor engines remotely and in real time. Advanced sensors, AI, and machine learning algorithms are enabling predictive maintenance, which identifies potential issues before they cause engine failure, reducing downtime and repair costs. Furthermore, modern monitoring systems can track fuel efficiency and emissions, helping operators comply with increasingly stringent environmental standards, such as the IMO 2020 sulfur cap. These technological innovations not only improve engine performance but also enhance the overall safety and sustainability of marine operations.

What Challenges Are Associated with Implementing Marine Engine Monitoring Systems?

Despite their advantages, implementing marine engine monitoring systems presents several challenges. One of the key issues is the integration of these systems with existing, often outdated, engine infrastructure, which can be complex and costly. In addition, the sheer volume of data generated by these monitoring systems can be overwhelming for operators, requiring specialized software and personnel to manage and analyze the information effectively. Another challenge is ensuring the security of data, especially as IoT-enabled systems become more prevalent, raising concerns about potential cyberattacks. Moreover, the maritime industry often faces resistance to adopting new technologies due to the high costs and training required, further slowing down the implementation of these advanced monitoring systems.

Growth in the Marine Engine Monitoring Systems Market Is Driven by Several Factors

The growth in the marine engine monitoring systems market is driven by several factors, including the increasing demand for operational efficiency, advancements in predictive maintenance technology, and rising environmental regulations. As shipping companies strive to reduce fuel costs and improve engine performance, the adoption of monitoring systems is becoming essential. Technological innovations in real-time monitoring, IoT, and AI-driven analytics are further fueling demand, as they enable more precise and proactive management of engine health. Additionally, regulatory pressures related to emissions and sustainability are prompting maritime operators to adopt systems that help them monitor and control engine output. These factors, along with the need to minimize downtime and maximize vessel longevity, are driving significant growth in the marine engine monitoring systems market.

Select Competitors (Total 14 Featured) -

TABLE OF CONTENTS

I. METHODOLOGY

II. EXECUTIVE SUMMARY

III. MARKET ANALYSIS

IV. COMPETITION

(ÁÖ)±Û·Î¹úÀÎÆ÷¸ÞÀÌ¼Ç 02-2025-2992 kr-info@giikorea.co.kr
¨Ï Copyright Global Information, Inc. All rights reserved.
PC¹öÀü º¸±â