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市場調查報告書
商品編碼
2007773
智慧路燈市場預測至2034年—按組件、連接技術、照明類型、應用、最終用戶和地區分類的全球分析Smart Street Lighting Market Forecasts to 2034- Global Analysis By Component (Hardware, Software and Services), Connectivity Technology, Lighting Type, Application, End User and By Geography |
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根據 Stratistics MRC 的數據,預計到 2026 年,全球智慧路燈市場規模將達到 48.6 億美元,在預測期內將以 19.2% 的複合年成長率成長,到 2034 年將達到 198.2 億美元。
智慧路燈是指將節能型LED照明燈具與感測器、無線通訊和集中式管理平台等智慧控制技術結合的先進城市照明系統。這些系統能夠實現即時監控、自適應亮度控制和自動故障檢測,從而最佳化能耗並提高維護效率。透過物聯網(IoT)連接,智慧路燈可以提升公共,支援智慧城市建設,並降低營運成本。此外,它們還可以與環境監測、交通管理和監控等附加服務整合,使其成為現代城市基礎設施的重要組成部分。
對提高能源效率和降低成本的需求日益成長
降低能耗和營運成本的日益成長的需求是推動市場發展的主要動力。地方政府和國家政府正擴大採用LED照明系統結合智慧控制技術,以顯著降低電力消耗和維護成本。這些系統具備自適應照明和遠端監控功能,能夠實現最佳利用。不斷上漲的電費和預算限制進一步加速了從傳統照明轉向智慧照明解決方案的轉變,節能基礎設施已成為全球城市發展舉措的重點。
高昂的初始投資成本
儘管智慧路燈系統具有長遠的益處,但前期所需的大量投資是其部署的一大障礙。 LED照明燈具、感測器、通訊網路和集中式管理軟體的成本可能相當高昂,尤其是在大規模部署的情況下。許多市政當局,特別是發展中地區的市政當局,面臨預算限制,難以證明初始成本的合理性。此外,安裝的複雜性以及對熟練人員的需求進一步增加了成本,減緩了系統的普及速度,並延緩了傳統路燈基礎設施的現代化進程。
永續性與碳排放減少目標
全球對永續性和減少碳排放的關注為市場帶來了巨大的成長機會。世界各國政府都在實施嚴格的環境法規和氣候變遷減緩計劃,並推廣節能技術的應用。智慧照明系統透過降低能耗和提高運作效率,有助於減少溫室氣體排放。與太陽能等再生能源來源的整合進一步增強了永續性。這些因素使得智慧路燈成為實現長期環境和城市永續性目標的關鍵要素。
與現有基礎設施整合面臨的挑戰
市場面臨的主要挑戰之一是智慧照明系統與現有傳統基礎設施整合的困難。老舊的路燈網路通常與現代數位技術不相容,需要大規模升級或徹底更換。這會導致成本增加、技術複雜化以及計劃週期延長。此外,不同硬體和軟體平台之間的互通性問題會阻礙無縫通訊和系統效能,從而對高效部署構成風險,並可能限制基礎設施落後地區的普及。
新冠疫情對智慧路燈市場產生了複雜的影響。雖然最初的封鎖措施擾亂了供應鏈、延誤了計劃並削減了市政預算,但這場危機也凸顯了智慧互聯城市基礎設施的重要性。世界各國政府開始將建構具有韌性和節能性的系統作為其復甦計畫的優先事項。疫情加速了數位轉型和智慧城市建設,間接推動了市場成長。後疫情時代,人們對永續性和基礎設施現代化的日益關注,正在推動對智慧路燈解決方案的新投資。
在預測期內,螢光照明領域預計將佔據最大的市場佔有率。
由於螢光燈照明應用廣泛且成本相對較低(與先進的替代技術相比),預計在預測期內,螢光照明仍將佔據最大的市場佔有率。許多地區在LED智慧照明全面普及之前,仍將螢光照明系統作為過渡方案。此外,螢光燈照明與某些傳統基礎設施的兼容性也支援其繼續使用。然而,儘管螢光照明在當前市場格局中仍佔據重要地位,但預計將被更節能、更耐用的LED技術逐步取代。
預計智慧城市計劃領域在預測期內將呈現最高的複合年成長率。
在預測期內,由於快速的都市化和政府對數位基礎設施投資的不斷增加,智慧城市計劃領域預計將呈現最高的成長率。智慧路燈在智慧城市生態系統中發揮著至關重要的作用,它能夠實現互聯互通、資料收集和高效的資源管理。與物聯網平台的整合使城市能夠改善公共、最佳化交通流量並監測環境狀況。已開發經濟體和新興經濟體對智慧城市解決方案的日益普及,並持續推動該領域的強勁需求。
在預測期內,由於政府強力的主導舉措、嚴格的能源效率法規以及對智慧技術的早期應用,歐洲地區預計將佔據最大的市場佔有率。該地區各國正積極投資智慧城市建設和永續基礎設施。優惠的政策、資助項目以及官民合作關係進一步推動了智慧路燈系統的應用。此外,領先的技術供應商和完善的城市基礎設施也鞏固了歐洲在全球市場的領先地位。
在預測期內,亞太地區預計將呈現最高的複合年成長率,這主要得益於人口成長和智慧城市計劃投資的增加。中國和印度等國的政府正致力於城市基礎設施現代化和提高能源效率。永續發展意識的永續性以及物聯網解決方案的日益普及,進一步加速了市場成長。此外,政府的支持性政策和大規模基礎設施建設計劃也全部區域的智慧路燈部署創造了巨大機會。
According to Stratistics MRC, the Global Smart Street Lighting Market is accounted for $4.86 billion in 2026 and is expected to reach $19.82 billion by 2034 growing at a CAGR of 19.2% during the forecast period. Smart street lighting refers to an advanced urban lighting system that integrates energy efficient LED luminaries' with intelligent control technologies such as sensors, wireless communication, and centralized management platforms. These systems enable real-time monitoring, adaptive brightness control, and automated fault detection, optimizing energy consumption and maintenance efficiency. By leveraging Internet of Things (IoT) connectivity, smart street lighting enhances public safety, supports smart city initiatives, and reduces operational costs. It can also integrate with additional services such as environmental monitoring, traffic management, and surveillance, making it a critical component of modern urban infrastructure.
Rising demand for energy efficiency and cost savings
The growing emphasis on reducing energy consumption and operational expenditures is a key driver for the market. Municipalities and governments are increasingly adopting LED based lighting systems combined with intelligent controls to significantly lower electricity usage and maintenance costs. These systems provide adaptive lighting and remote monitoring, enabling optimized energy utilization. Rising electricity prices and budget constraints further accelerate the transition from conventional lighting to smart solutions, making energy efficient infrastructure a strategic priority for urban development initiatives worldwide.
High initial investment costs
Despite long-term benefits, the high upfront capital required for deploying Smart Street lighting systems acts as a major restraint. Costs associated with LED fixtures, sensors, communication networks, and centralized management software can be substantial, particularly for large scale installations. Many municipalities, especially in developing regions, face budget limitations and struggle to justify initial expenditures. Additionally, the complexity of installation and need for skilled workforce further add to costs, slowing adoption rates and delaying modernization of traditional street lighting infrastructure.
Sustainability and carbon reduction goals
Global focus on sustainability and carbon emission reduction presents significant growth opportunities for the market. Governments are implementing stringent environmental regulations and climate action plans, encouraging the adoption of energy efficient technologies. Smart lighting systems contribute to reduced greenhouse gas emissions through lower energy consumption and improved operational efficiency. Integration with renewable energy sources such as solar power further enhances sustainability. These factors position smart street lighting as a vital component in achieving long-term environmental and urban sustainability goals.
Integration challenges with legacy infrastructure
One of the major threats facing the market is the difficulty of integrating smart lighting systems with existing legacy infrastructure. Older street lighting networks often lack compatibility with modern digital technologies, requiring extensive upgrades or complete replacement. This can lead to increased costs, technical complexities, and prolonged project timelines. Additionally, interoperability issues between different hardware and software platforms may hinder seamless communication and system performance, posing risks to efficient deployment and limiting adoption in regions with outdated infrastructure systems.
The COVID-19 pandemic had a mixed impact on the smart street lighting market. While initial lockdowns disrupted supply chains, delayed projects, and reduced municipal budgets, the crisis also highlighted the importance of smart and connected urban infrastructure. Governments began prioritizing resilient and energy-efficient systems as part of recovery plans. The pandemic accelerated digital transformation and smart city initiatives, indirectly supporting market growth. Post pandemic, increased focus on sustainability and infrastructure modernization has contributed to renewed investments in smart street lighting solutions.
The fluorescent lighting segment is expected to be the largest during the forecast period
The fluorescent lighting segment is expected to account for the largest market share during the forecast period, due to its widespread existing deployment and relatively lower cost compared to advanced alternatives. Many regions continue to rely on fluorescent systems as a transitional solution before fully adopting LED based smart lighting. Additionally, compatibility with certain legacy infrastructures supports its continued use. However, gradual replacement by more energy efficient and durable LED technologies is anticipated, though fluorescent lighting remains significant in the current market landscape.
The smart city projects segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the smart city projects segment is predicted to witness the highest growth rate, due to rapid urbanization and increasing government investments in digital infrastructure. Smart street lighting plays a crucial role in smart city ecosystems by enabling connectivity, data collection, and efficient resource management. Integration with IoT platforms allows cities to enhance public safety, optimize traffic flow, and monitor environmental conditions. Growing adoption of intelligent urban solutions across both developed and emerging economies continues to fuel strong demand in this segment.
During the forecast period, the Europe region is expected to hold the largest market share, due to strong government initiatives, stringent energy efficiency regulations, and early adoption of smart technologies. Countries across the region are actively investing in smart city development and sustainable infrastructure. Favorable policies, funding programs, and public private partnerships further drive implementation of smart street lighting systems. Additionally, the presence of leading technology providers and well-established urban infrastructure contributes to Europe's dominant position in the global market.
Over the forecast period, the Asia Pacific region is anticipated to exhibit the highest CAGR, owing to expanding population, and increasing investments in smart city projects. Governments in countries such as China and India are focusing on modernizing urban infrastructure and improving energy efficiency. Rising awareness about sustainability and growing adoption of IoT based solutions are further accelerating market growth. Additionally, supportive government policies and large scale infrastructure development projects create significant opportunities for smart street lighting deployment across the region.
Key players in the market
Some of the key players in Smart Street Lighting Market include Signify, Schreder, Acuity Brands, Eaton Corporation, Osram Licht AG, Hubbell Incorporated, Telensa, CIMCON Lighting, Flashnet, Dimonoff, Tvilight, Zumtobel Group, Itron, Honeywell International and Schneider Electric.
In February 2026, CGI Inc. and Schneider Electric expanded their strategic partnership to deliver end-to-end digital solutions for energy providers in the DACH region. The collaboration integrates CGI's IT consulting, systems integration, and managed services with Schneider Electric's grid technologies such as ADMS and GIS to help utilities modernize networks.
In November 2025, Schneider Electric and Switch announced a two-phase supply capacity agreement (SCA) totaling $1.9 billion in sales. The milestone deal includes prefabricated power modules and the first North American deployment of chillers. Schneider Electric and Switch have evolved their longstanding partnership to support the growing AI and hyperscale computing demand of AI factories.
Note: Tables for North America, Europe, APAC, South America, and Rest of the World (RoW) are also represented in the same manner as above.