市場調查報告書
商品編碼
1577141
2030 年 Li-Fi 市場預測:按類型、傳輸類型、組件、應用、最終用戶和地區進行的全球分析Li-Fi Market Forecasts to 2030 - Global Analysis By Type (Li-Fi Dongle, Li-Fi Lamp, Li-Fi Access Point and Li-Fi Kit), Transmission Type, Component, Application, End User and By Geography |
根據 Stratistics MRC 的數據,2024 年全球 Li-Fi 市場規模為 6.6451 億美元,預計將以 51.9% 的複合年成長率成長,到 2030 年達到 81.6309 億美元。
Li-Fi(光照上網)以創建和行銷一種無線通訊技術而聞名,該技術使用光波(通常來自 LED)高速傳輸資料。 Li-Fi 透過可見光通訊(VLC) 提供安全、寬頻和無干擾的資料傳輸,這與使用射頻的傳統 Wi-Fi 不同。這項技術在無線電波稀缺或危險的領域非常有用,例如醫療保健、國防、航空和水下。
據美國預算辦公室稱,美國國防支出預計每年都會增加,直到 2033 年。 2023年美國國防支出將達7,460億美元。根據美國能源局的數據,LED 照明通常比傳統白熾燈泡消費量約 25% 至 80% 的能源。
提高頻譜可用性
LiFi 相對於傳統 Wi-Fi 技術有一個重大優勢,因為它具有更廣泛的頻寬。與使用射頻 (RF)頻譜受限區域的 Wi-Fi 不同,LiFi 使用可見頻譜。此頻譜較寬,主要不用於傳輸,提供近乎無限的頻寬。這使得 LiFi 非常適合需要高速連接的應用,提供更快的資料傳輸速度、更少的擁塞並提高效能。
戶外滲透率有限
Li-Fi戶外滲透率低帶來挑戰。與覆蓋範圍大的傳統Wi-Fi相比,Li-Fi透過可見光傳輸資料,這需要發送器和接收器之間有直接的視線。這種限制在一定程度上限制了它的範圍,使其不適合廣泛的環境。因此,通常需要額外的基礎設施,例如多個光源,以確保足夠的覆蓋範圍。因此,雖然 Li-Fi 在室內提供高速資料傳輸,但在室外的使用仍然有限,阻礙了其在需要廣泛連接的公共場所的廣泛使用。
高速連線的需求不斷成長
推動 LiFi 產業發展的關鍵促進因素是對高速網路連線不斷成長的需求。由於企業、教育機構和個人依靠網際網路實現各種目的,包括線上遊戲、視訊串流和遠端工作,因此更快、更可靠的連接至關重要。 LiFi 是滿足這一不斷成長的需求的首選,因為它可以提供比傳統 Wi-Fi 技術快得多的資料傳輸速率。此外,隨著虛擬實境和擴增實境等資料密集型技術變得更加普遍,對高速連線的需求將持續成長。
缺乏標準化
Li-Fi 市場缺乏標準化是廣泛使用的主要障礙。缺乏廣泛接受的通訊協定和標準會導致不同製造商和設備之間的互通性問題。儘管IEEE 802.11bb標準是為了促進互通性而製定的,但一些行業參與者反對其有效性並支持其他標準,例如ITU-T G.vlc。最終,這種分散的環境使得將 Li-Fi 技術整合到當前系統中變得困難,並阻礙製造商將 Li-Fi 晶片整合到設備中,從而減緩了行業成長和技術創新。
COVID-19 的影響
COVID-19 的爆發對 Li-Fi 行業產生了重大影響,由於供應鏈中斷和旅行限制,其擴張速度放緩。由於企業優先考慮必需品而不是 Li-Fi 等新興技術,製造和業務營運面臨困難,市場收入受到阻礙。然而,這一趨勢也可能引起人們對 Li-Fi 在醫療領域遠端患者監護潛力的關注,並刺激進一步的應用。隨著經濟復甦,對 Li-Fi 提供的快速、安全通訊解決方案的需求將會增加,特別是在有電磁干擾問題的環境中。這顯示疫情過後市場前景將會改善。
發光二極體(LED) 產業預計在預測期內規模最大
預計發光二極體(LED) 領域在預測期內將佔據最大的市場佔有率。 LiFi 技術的普及化很大程度上受到 LED 的有效性和適應性的影響。 LED 壽命長、節能且易於調變資料傳輸。此外,將 LED 整合到目前的照明基礎設施中可以降低實施 LiFi 系統的成本和複雜性,從而增加其對希望利用這項最尖端科技的企業和組織的吸引力。
預計醫療保健產業在預測期內複合年成長率最高
在市場區隔期之外,醫療保健產業預計將在 XX 市場中表現出最高的複合年成長率,因為醫療保健機構需要可靠、安全和快速的通訊。 Li-Fi 技術使醫療設備能夠快速通訊生命徵象,從而實現即時病患監測並及時治療。此外,Li-Fi 的物聯網 (IoT) 相容性改善了不同醫療設備之間的連接性,從而提高了醫院環境中的患者照護和業務效率。
預計亞太地區在預測期內將佔據最大的市場佔有率。這是由於物聯網設備的使用不斷增加、智慧城市計劃的不斷採用以及對高速網際網路的需求不斷成長。快速的都市化和政府對尖端通訊技術的支持進一步加速了採用。此外,頻寬擁塞是中國和印度等人口稠密地區的問題,因此需要 Li-Fi 和其他替代方案。 Li-Fi 在醫療保健和教育領域也越來越受歡迎,因為它是一種安全、無干擾的傳輸方式。
預計北美地區在預測期內的複合年成長率最高。這是由於各行業對安全、快速通訊解決方案的需求不斷成長。無線頻寬的擁塞導致企業尋找常規 Wi-Fi 的替代方案,使 Li-Fi 成為可靠資料傳輸的首選。北美被定位為 Li-Fi 系統開發和部署的主要參與者,因為 Li-Fi 技術的整合提高了醫療保健和教育等行業的業務效率。
According to Stratistics MRC, the Global Li-Fi Market is accounted for $664.51 million in 2024 and is expected to reach $8163.09 million by 2030 growing at a CAGR of 51.9% during the forecast period. The creation and marketing of wireless communication technology that uses light waves-usually from LEDs-to send data quickly is known as Li-Fi (Light Fidelity). Li-Fi provides safe, high-bandwidth, and interference-free data transmission via visible light communication (VLC), as opposed to conventional Wi-Fi, which uses radio frequencies. In fields like healthcare, defense, aviation, and underwater where radio signals are scarce or dangerous, this technology is extremely helpful.
According to the U.S. Congressional Budget Office, defense spending in the United States is predicted to increase yearly until 2033. Defense outlays in the United States amounted to USD 746 billion in 2023. According to the US Department of Energy, LED lights typically use about 25% to 80% less energy than traditional incandescent bulbs.
Increased spectrum availability
LiFi's enhanced spectrum availability offers it a major edge over conventional Wi-Fi technologies. LiFi makes use of the visible light spectrum, as opposed to Wi-Fi, which uses a restricted area of the radio frequency (RF) spectrum. This spectrum offers an almost infinite source of bandwidth as it is much larger and primarily unutilized for transmission. LiFi is therefore a perfect fit for applications that require high-speed connectivity since it may provide noticeably faster data transmission rates, less congestion, and enhanced performance.
Limited outdoor penetration
The Li-Fi's low outdoor penetration presents difficulties. In contrast to conventional Wi-Fi, which has a wide coverage area, Li-Fi transmits data via visible light, which requires a direct line of sight between the transmitter and the receiver. Its effective range is slightly restricted by this limitation, which makes it less appropriate for extensive environments. Therefore, in order to guarantee sufficient coverage, extra infrastructure-like several light sources-is frequently required. As a result, while Li-Fi provides fast data transfer indoors, its outside uses are still restricted, which prevents wider adoption in public areas where wide-ranging connectivity is necessary.
Growing demand for high-speed connectivity
A significant driver propelling the LiFi industry is the rising need for high-speed internet access. Faster and more dependable connections have become essential as companies, educational institutions, and individuals depend more and more on the internet for a variety of purposes, including as online gaming, video streaming, and remote work. LiFi is a desirable option for satisfying this expanding need since it can provide noticeably faster data transfer rates than conventional Wi-Fi technologies. High-speed connectivity is also becoming more and more necessary as data-intensive technologies like virtual and augmented reality gain traction.
Lack of standardization
The lack of standardization in the Li-Fi market poses a significant barrier to its widespread adoption. Due to the lack of widely accepted protocols or standards, there are now problems with interoperability between various manufacturers and devices. Although the IEEE 802.11bb standard was created to promote interoperability, certain industry participants disagree with its effectiveness and support other standards, such as ITU-T G.vlc. In the end, this segmented environment slows down industry growth and innovation efforts by making it more difficult to integrate Li-Fi technology into current systems and discouraging manufacturers from integrating Li-Fi chips in devices.
Covid-19 Impact
The COVID-19 pandemic had a major effect on the Li-Fi sector, slowing its expansion because of supply chain interruptions and travel limitations. As businesses emphasized necessities over emerging technology like Li-Fi, manufacturing and company operations faced difficulties that hampered market income. But the epidemic also brought attention to Li-Fi's potential for remote patient monitoring in the medical field, which may spur additional applications. The need for fast, secure communication solutions that Li-Fi can offer is growing as economies recover, particularly in settings where electromagnetic interference is an issue. This indicates that market prospects will improve after the epidemic.
The light emitting diodes (LED) segment is expected to be the largest during the forecast period
The light emitting diodes (LED) segment is projected to account for the largest market share during the projection period. The popularity of LiFi technology is significantly influenced by the effectiveness and adaptability of LEDs. LEDs have extended lifespan, good energy efficiency, and simple modulation for data transmission. Furthermore, integrating LEDs into the current lighting infrastructure lowers the cost and complexity of implementing LiFi systems, increasing its appeal to companies and organizations looking to take advantage of this cutting-edge technology.
The healthcare segment is expected to have the highest CAGR during the forecast period
The healthcare segment is projected to have the highest CAGR in the XX market during the extrapolated period, due to healthcare facilities require dependable, secure, and fast communication. Li-Fi technology makes it possible for medical devices to communicate vital signs quickly, enabling real-time patient monitoring and enabling timely treatments. Furthermore, Li-Fi's Internet of Things (IoT) compatibility improves connectivity across different medical equipment, enhancing patient care and operational effectiveness in hospital environments.
Over the forecast period, the Asia Pacific region is anticipated to hold the largest market share, owing to its expanding use of IoT devices, the growing adoption of smart city initiatives, and the rising need for high-speed internet. Adoption is further accelerated by rapid urbanization and government backing for cutting-edge communication technology. Furthermore, spectrum congestion is a problem in the region's densely populated nations, like China and India, which makes Li-Fi and other alternate options necessary. The popularity of Li-Fi is also fuelled by the healthcare and educational sectors because of its safe and interference-free transmission.
During the forecast period, the North America region is anticipated to register the highest CAGR, because of the increasing need for secure, rapid communication solutions in a variety of industries. Due to radio frequency spectrum congestion, organizations are increasingly searching for alternatives to regular Wi-Fi, which makes Li-Fi a desirable choice for dependable data transmission. North America is positioned as a major participant in the development and uptake of Li-Fi systems due to the improved operational efficiency that comes from the integration of Li-Fi technology in industries like healthcare and education.
Key players in the market
Some of the key players profiled in the Li-Fi Market include PureLi-Fi, Oledcomm, VLNComm, Acuity Brands, Panasonic Corporation, Velmenni, LightBee, Lucibel, Firefly Li-Fi, Optoelectronics Technology Co., Ltd. (OPTO TECH), Integra Optics, Linmore LED, Wipro Lighting, FSONA Networks Corporation, TeleLumen, General Electric (GE) Lighting, Axrtek, and Renesas Electronics Corporation.
In November 2021, Panasonic unveiled LiFi prototypes for automotive and smart home applications, focusing on vehicle-to-vehicle communication.
In May 2020, Lucibel launched their LiFi-enabled lighting products, primarily targeting the healthcare sector, offering energy-efficient lighting with secure internet connectivity.
In March 2019, Acuity Brands launched LiFi-integrated lighting systems for smart office environments, combining lighting and wireless communication.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.