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パワーオーバーイーサネット(POE)照明市場:オファリング別、用途別、地域別、2026~2032年

Power over Ethernet POE Lighting Market By Offering (Hardware, Software and Services), Application (Commercial, Industrial, Residential), & Region For 2026-2032


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英文 202 Pages
納期
2~3営業日
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価格表記: USDを日本円(税抜)に換算
本日の銀行送金レート: 1USD=144.76円
パワーオーバーイーサネット(POE)照明市場:オファリング別、用途別、地域別、2026~2032年
出版日: 2025年05月12日
発行: Verified Market Research
ページ情報: 英文 202 Pages
納期: 2~3営業日
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概要

パワーオーバーイーサネット(POE)照明市場の評価-2026~2032年

エネルギー効率が高く、スマートなビルソリューションへの需要が高まっています。企業や産業がエコフレンドリー取り組みを優先する中、POE照明システムはビル管理システムと統合して自動制御することで大幅な省エネを実現します。この技術は、データと電力を単一のイーサネットケーブルで伝送することで、設置を簡素化し、運用コストを削減します。追加の配線が必要ないため、2024年には155億1,000万米ドルを超え、2032年には1,375億5,000万米ドルに達すると予測されています。

さらに、スマートビルディングにおけるIoTの採用拡大やカーボンフットプリントの削減重視の高まりが、商業、産業、住宅セグメントにおけるPOE照明システムの需要を押し上げており、2026~2032年のCAGRは約34.60%で成長する見込みです。

パワーオーバーイーサネット(POE)照明市場定義/概要

パワーオーバーイーサネット(POE)照明とは、データと電力の両方を伝送するイーサネットケーブルを介してLED照明に電力を供給し、制御するシステムです。これにより、個による電気配線が不要になり、照明システムの集中制御が可能になります。スマートビル、商業地区、産業施設、住宅プロジェクトなど、POE照明はエネルギー効率、設置の容易さ、遠隔管理のしやすさなど、すべての面でメリットがあります。POE照明の将来は、IoT導入の増加、エネルギー効率に優れたシステムに対する需要の増加、スマートシティプロジェクトの重視の高まりにより、有望視されており、サステイナブルインフラ開発における重要な技術となっています。

IoT技術の統合はPower over Ethernet POE照明市場の成長にどのように寄与しているか?

モノのインターネット(IoT)技術の統合は、パワーオーバーイーサネット(POE)照明市場の成長を促進する上で極めて重要です。1本のイーサネットケーブルで電力とデータの両方を送ることができるPOE照明システムは、当然IoTアーキテクチャと互換性があり、スマートビルやコネクテッド環境にとって優れた選択肢となります。この相乗効果により、稼働率センシング、デイライト・ハーベスティング、リアルタイムエネルギーモニタリングなどの先進的機能が可能になり、これらすべてがエネルギー効率の向上と運用インテリジェンスの向上に貢献します。

2024年4月、米国一般調達庁(GSA)は、従来型照明に比べてエネルギー消費を35%削減することを目標に、50の連邦ビルにIoT対応POE照明システムを設置するパイロットプログラムを発表しました。この取り組みは、他の政府や商業施設の標準となることが期待されています。さらに2024年5月、IEEE Internet of Things Journalは、IoT統合POE照明システムが病院内の屋内測位と資産追跡に使用される可能性を示し、機器の紛失を数百万米ドル節約し、業務効率を改善する可能性を示しました。さらに、欧州連合(EU)は2024年8月、IoT対応POEシステムなどのスマート照明技術の利用を積極的に推進する建物の新しいエネルギー効率基準を導入しました。こうした進歩と、スマートかつサステイナブルビルソリューションに対する需要の高まりが相まって、IoT統合によるPOE照明市場の成長が大幅に促進される展望です。

設置費用とインフラのアップグレード費用の上昇は、POE照明市場の成長を妨げるか?

設置やインフラのアップグレードにかかるコストの上昇が、パワーオーバーイーサネット(POE)照明市場の成長を制限する可能性があります。POE照明システムは、専用のイーサネットケーブルやスイッチ、互換性のあるネットワークインフラが必要なため、多額の先行投資が必要になる可能性があります。大規模な設置に依存する企業や産業にとって、こうした初期コストは大きな障壁となり得る。さらに、既存の建物をPOE照明に改修する場合、複雑な配線工事が必要になり、設置コストが上昇する可能性があります。こうした経済的課題は、中小企業や機関がPOE照明システムを導入することを躊躇させ、市場の成長を制限する可能性があります。

さらに、システムの設置やメンテナンスに熟練した労働力が必要なため、運用コストが上昇する可能性があります。POE照明には、ITと電気の両方の専門知識が必要であり、多くの組織では、統合を管理する資格のある専門家を見つけることが困難な場合があります。また、アップグレードのコストが高いため、技術進歩のための財源が限られている市場では、POEの採用が遅れる可能性もあります。省エネや制御性の向上など、POEの長期的なメリットは魅力的だが、初期費用の負担が大きいため、市場の成長が鈍化する可能性があります。

目次

第1章 POE照明の世界市場のイントロダクション

  • 市場概要
  • 調査範囲
  • 前提条件

第2章 エグゼクティブサマリー

第3章 VERIFIED MARKET RESEARCHの調査手法

  • データマイニング
  • バリデーション
  • 一次資料
  • データソース一覧

第4章 パワーオーバーイーサネット(POE)照明の世界市場展望

  • 概要
  • 市場力学
    • 促進要因
    • 抑制要因
    • 機会
  • ポーターのファイブフォースモデル
  • バリューチェーン分析

第5章 パワーオーバーイーサネット(POE)照明の世界市場:オファリング別

  • 概要
  • ハードウェア
  • ソフトウェアとサービス

第6章 パワーオーバーイーサネット(POE)照明の世界市場:用途別

  • 概要
  • 業務用
  • 産業用
  • 住宅用

第7章 パワーオーバーイーサネット(POE)照明の世界市場:地域別

  • 概要
  • 北米
    • 米国
    • カナダ
    • メキシコ
  • 欧州
    • ドイツ
    • 英国
    • フランス
    • その他の欧州
  • アジア太平洋
    • 中国
    • 日本
    • インド
    • その他のアジア太平洋
  • その他
    • ラテンアメリカ
    • 中東・アフリカ

第8章 パワーオーバーイーサネット(POE)照明の世界市場競合情勢

  • 概要
  • 各社の市場ランキング
  • 主要開発戦略

第9章 企業プロファイル

  • Signify(Philips Lighting)(オランダ)
  • Hubbell Incorporated(米国)
  • Innovative Lighting(GENISYS)(米国)
  • Deco Lighting(米国)
  • Ideal Industries, Inc.(Cree)(米国)
  • Eaton Corp.(アイルランド)
  • Herbert Waldmann GmbH & Co. Kg(Waldmann Lighting)(ドイツ)
  • H.E. Williams(米国)
  • NAME Energy Group(MHT Lighting)(米国)
  • Ubiquity Networks(米国)

第10章 主要開発

  • 製品上市/開発
  • 合併と買収
  • 事業拡大
  • パートナーシップと提携

第11章 付録

  • 関連調査
目次
Product Code: 62472

Power over Ethernet POE Lighting Market Valuation - 2026-2032

There is an increasing demand for energy-efficient and smart building solutions. As businesses and industries prioritize environmentally friendly practices, PoE lighting systems provide significant energy savings by integrating with building management systems for automated control. This technology simplifies installation and reduces operational costs by transmitting data and power over a single Ethernet cable, eliminating the need for additional wiring is surpassing USD 15.51 Billion in 2024 and reaching USD 137.55 Billion by 2032.

Furthermore, the growing adoption of IoT in smart buildings, as well as the increased emphasis on reducing carbon footprints, are driving up demand for PoE lighting systems in the commercial, industrial, and residential sectors is expected to grow at a CAGR of about 34.60% from 2026 to 2032.

Power over Ethernet POE Lighting Market: Definition/ Overview

Power over Ethernet (PoE) lighting is a system in which LED lighting is powered and controlled via an Ethernet cable that carries both data and electrical power. This eliminates the need for separate electrical wiring and enables centralized control of lighting systems. Smart buildings, commercial spaces, industrial facilities, and residential projects all benefit from PoE lighting, which is designed for energy efficiency, ease of installation, and remote management. The future of PoE lighting looks promising, thanks to rising IoT adoption, increased demand for energy-efficient systems, and a growing emphasis on smart city projects, making it a key technology in sustainable infrastructure development.

How is the Integration of IoT Technology Contributing to the Growth of Power over Ethernet POE Lighting Market?

The integration of Internet of Things (IoT) technology is critical to driving the growth of the Power over Ethernet (PoE) lighting market. PoE lighting systems, which can send both power and data over a single Ethernet cable, are naturally compatible with IoT architectures, making them an excellent choice for smart buildings and connected environments. This synergy enables advanced features like occupancy sensing, daylight harvesting, and real-time energy monitoring, all of which contribute to increased energy efficiency and operational intelligence.

In April 2024, the United States General Services Administration (GSA) announced a pilot program to install IoT-enabled PoE lighting systems in 50 federal buildings, with the goal of reducing energy consumption by 35% compared to traditional lighting. This initiative is expected to set the standard for other government and commercial buildings. Furthermore, in May 2024, the IEEE Internet of Things Journal showed IoT-integrated PoE lighting systems could be used for indoor positioning and asset tracking in hospitals, potentially saving millions of dollars in lost equipment and improving operational efficiency. Furthermore, in August 2024, the European Union implemented new energy efficiency standards for buildings that actively promote the use of smart lighting technologies, such as IoT-enabled PoE systems. These advancements, combined with the growing demand for smart and sustainable building solutions, are expected to significantly boost the growth of the PoE lighting market through IoT integration.

Will Rising Cost of Installation and Infrastructure Upgrades Hinder the Growth of the Power Over Ethernet POE Lighting Market?

The rising cost of installation and infrastructure upgrades may limit the growth of the Power over Ethernet (PoE) lighting market. PoE lighting systems can require significant upfront investments due to the need for specialized Ethernet cables, switches, and compatible network infrastructure. For businesses and industries that rely on large-scale installations, these initial costs can be a significant barrier. Furthermore, retrofitting existing buildings with PoE lighting may necessitate complex rewiring, which raises installation costs. These financial challenges may deter smaller businesses or institutions from implementing PoE lighting systems, limiting market growth.

Furthermore, the demand for skilled labor to install and maintain these systems can drive up operational costs. PoE lighting requires both IT and electrical expertise, and many organizations may have difficulty finding qualified professionals to manage the integration. The high cost of upgrades may also slow the adoption of PoE in markets with limited financial resources for technological advancement. While the long-term benefits of PoE, such as energy savings and increased control, are appealing, the high initial financial burden may slow market growth.

Category-Wise Acumens

Will Increasing Innovation of Hardware Drive the Power Over Ethernet POE Lighting Market?

Increasing hardware innovation is expected to drive significant growth in the Power over Ethernet (PoE) lighting market. Advances in hardware components, such as Ethernet switches, smart LED fixtures, and enhanced cabling, are improving PoE system performance and efficiency. These advancements enable increased power delivery and better control of lighting systems, which is critical for their use in large-scale commercial, industrial, and residential settings. In July 2024, According to a Tech Trends research article published, new PoE hardware developments improve the ability to power not only lighting but also other IoT devices, thereby contributing to the growth of smart buildings and energy-efficient infrastructure.

In June 2024, Cisco launched a new line of PoE switches, with the goal of supporting higher power outputs and improved data transmission for modern smart building solutions. This innovation addresses the growing demand for scalable, high-performance PoE systems. Furthermore, in August 2024, the European Union announced funding for smart city projects through its Green Deal initiative, which focuses on energy-efficient technologies such as advanced PoE hardware. Such government support and corporate investment in hardware innovation are expected to accelerate the adoption and expansion of PoE lighting systems, positioning hardware innovation as a key driver of market growth.

However, the software segment is the fastest growing, owing to rising demand for advanced control systems, automation, and smart building management solutions. As IoT integration and smart city initiatives grow, so does the demand for sophisticated software capable of remote control, energy optimization, and data analytics.

Will Rising Demand of Commercial Segment Fuel the Power Over Ethernet POE Lighting Market?

The growing demand in the commercial segment is expected to drive the power over ethernet (PoE) lighting market. The growing use of smart building technologies in commercial settings such as offices, hospitals, and retail stores is driving demand for energy-efficient PoE lighting systems. These systems provide centralized control, cost savings, and flexibility in managing lighting and other IoT devices, making them highly appealing to companies.

Furthermore, government initiatives that promote smart infrastructure are boosting the PoE lighting market. In June 2024, the United States Department of Energy announced increased funding for smart city projects, including energy-efficient lighting technology. This government support, combined with corporate investments in green technologies, is hastening PoE adoption in the commercial sector. Furthermore, In August 2024, Signify (formerly Philips Lighting) announced new PoE-enabled lighting solutions tailored for commercial buildings, demonstrating the growing emphasis on this market segment. Rising demand will continue to drive innovation and growth in the PoE lighting industry.

However, the residential segment is expanding at the fastest rate. As smart home technologies gain popularity and consumers seek more energy-efficient solutions, PoE lighting is becoming more prevalent in residential buildings, owing to the growing trend of home automation and IoT-enabled devices.

Country/Region-wise

Will Widespread Adoption of Smart Building Technologies in North America Drive the Power over Ethernet POE Lighting Market?

The widespread adoption of smart building technologies in North America is expected to have a significant impact on the Power over Ethernet (PoE) lighting market. PoE lighting systems, which provide both power and data via a single Ethernet cable, are becoming increasingly popular in smart buildings due to their energy efficiency, flexibility, and ability to integrate with other building systems.

In May 2024, the US Department of Energy announced a new initiative to promote energy-efficient lighting technologies in commercial buildings, with PoE lighting systems serving as a key focus. This government support is expected to increase adoption rates. Furthermore, a study published in the Journal of Building Engineering in February 2024 found that PoE lighting systems can reduce energy consumption by up to 30% when compared to traditional lighting systems in office buildings. The study, which included 50 commercial buildings in major North American cities, discovered that PoE lighting increased occupant comfort and productivity. These factors, along with the growing emphasis on sustainability and energy efficiency in building design, are expected to drive significant growth in the North American PoE lighting market over the coming years.

Will Rapid Urbanization in Asia-Pacific Propel the Power over Ethernet POE Lighting Market?

Rapid urbanization in the Asia-Pacific region is indeed expected to be a major catalyst for the Power over Ethernet (PoE) lighting market. As cities across the region experience unprecedented growth and modernization, there is an increasing demand for smart, energy-efficient building technologies. PoE lighting systems, which offer improved energy efficiency, easier installation, and seamless integration with other smart building systems, are well-positioned to meet this demand. According to a market research report published by verified market research in April 2024, the Asia-Pacific PoE lighting market is projected to grow at a CAGR of 34.60% between 2024 and 2031, outpacing the global average growth rate.

In June 2024, the Chinese government launched a new initiative to promote smart city technologies, with a particular emphasis on energy-efficient lighting systems in commercial and public buildings. This policy is expected to dramatically increase PoE lighting adoption in China, the region's largest market. Furthermore, a March 2024 study published in the journal Energy and Buildings examined the use of PoE lighting systems in 100 newly constructed office buildings in major Asian cities. The study discovered that buildings with PoE lighting systems used 25% less energy for lighting than those with traditional systems, while also reporting higher occupant satisfaction. Furthermore, in May 2024, the Singapore government launched a green building masterplan that includes incentives for the adoption of smart lighting technologies including PoE systems. These factors, combined with the rapid rate of construction and renovation in Asia-Pacific's urban centers, are expected to drive significant growth in the region's PoE lighting market in the coming years.

Competitive Landscape

The competitive landscape of the Power over Ethernet (PoE) lighting market is characterized by the presence of several emerging and mid-sized players who are focusing on innovation and expanding their product offerings. These companies are leveraging advancements in IoT and smart building technologies to provide integrated lighting solutions that offer energy efficiency and enhanced control. Many are also forming strategic partnerships with system integrators and expanding their geographic reach to capitalize on the growing demand in commercial and industrial sectors. Additionally, increasing government initiatives promoting energy-efficient infrastructure are creating opportunities for new entrants in the market.

Some of the prominent players operating in the power over ethernet POE lighting market include:

Signify

Hubbell Incorporated

Innovative Lighting

Deco Lighting

Ideal Industries, Inc

Eaton Corp.

Latest Developments

In June 2024, Ubiquiti released upgraded PoE network switches that support faster data speeds and better integration with smart building devices. The launch is expected to increase PoE adoption in industries that require more complex lighting and IoT systems.

In June 2024, Cree Lighting expanded its PoE product line with the introduction of new smart lighting fixtures designed for industrial use. These products provide increased durability and are designed for energy-intensive environments, contributing to market growth.

In May 2024, The Platformatics announced new partnerships to integrate its PoE lighting solutions with building automation systems. This collaboration aims to promote seamless control and monitoring of energy consumption, attracting more commercial clients.

In April 2024, Innovative Lighting introduced a new PoE lighting system for residential use, marking their entry into the rapidly growing smart home segment. Their solution focuses on providing affordable, energy-efficient lighting for modern homes.

Power over Ethernet POE Lighting Market, By Category

  • Offering:
  • Hardware
  • Software and Services
  • Application:
  • Commercial
  • Industrial
  • Residential
  • Region:
  • North America
  • Europe
  • Asia-Pacific
  • Latin America
  • Middle East & Africa

TABLE OF CONTENTS

1 INTRODUCTION OF GLOBAL POWER OVER ETHERNET (POE) LIGHTING MARKET

  • 1.1 Overview of the Market
  • 1.2 Scope of Report
  • 1.3 Assumptions

2 EXECUTIVE SUMMARY

3 RESEARCH METHODOLOGY OF VERIFIED MARKET RESEARCH

  • 3.1 Data Mining
  • 3.2 Validation
  • 3.3 Primary Interviews
  • 3.4 List of Data Sources

4 GLOBAL POWER OVER ETHERNET (POE) LIGHTING MARKET OUTLOOK

  • 4.1 Overview
  • 4.2 Market Dynamics
    • 4.2.1 Drivers
    • 4.2.2 Restraints
    • 4.2.3 Opportunities
  • 4.3 Porters Five Force Model
  • 4.4 Value Chain Analysis

5 GLOBAL POWER OVER ETHERNET (POE) LIGHTING MARKET, BY OFFERING

  • 5.1 Overview
  • 5.2 Hardware
  • 5.3 Software and Services

6 GLOBAL POWER OVER ETHERNET (POE) LIGHTING MARKET, BY APPLICATION

  • 6.1 Overview
  • 6.2 Commercial
  • 6.3 Industrial
  • 6.4 Residential

7 GLOBAL POWER OVER ETHERNET (POE) LIGHTING MARKET, BY GEOGRAPHY

  • 7.1 Overview
  • 7.2 North America
    • 7.2.1 U.S.
    • 7.2.2 Canada
    • 7.2.3 Mexico
  • 7.3 Europe
    • 7.3.1 Germany
    • 7.3.2 U.K.
    • 7.3.3 France
    • 7.3.4 Rest of Europe
  • 7.4 Asia Pacific
    • 7.4.1 China
    • 7.4.2 Japan
    • 7.4.3 India
    • 7.4.4 Rest of Asia Pacific
  • 7.5 Rest of the World
    • 7.5.1 Latin America
    • 7.5.2 Middle East & Africa

8 GLOBAL POWER OVER ETHERNET (POE) LIGHTING MARKET COMPETITIVE LANDSCAPE

  • 8.1 Overview
  • 8.2 Company Market Ranking
  • 8.3 Key Development Strategies

9 COMPANY PROFILES

  • 9.1 Signify (Philips Lighting) (Netherlands)
    • 9.1.1 Overview
    • 9.1.2 Financial Performance
    • 9.1.3 Product Outlook
    • 9.1.4 Key Developments
  • 9.2 Hubbell Incorporated (US)
    • 9.2.1 Overview
    • 9.2.2 Financial Performance
    • 9.2.3 Product Outlook
    • 9.2.4 Key Developments
  • 9.3 Innovative Lighting (GENISYS) (US)
    • 9.3.1 Overview
    • 9.3.2 Financial Performance
    • 9.3.3 Product Outlook
    • 9.3.4 Key Developments
  • 9.4 Deco Lighting (US)
    • 9.4.1 Overview
    • 9.4.2 Financial Performance
    • 9.4.3 Product Outlook
    • 9.4.4 Key Developments
  • 9.5 Ideal Industries, Inc. (Cree) (US)
    • 9.5.1 Overview
    • 9.5.2 Financial Performance
    • 9.5.3 Product Outlook
    • 9.5.4 Key Developments
  • 9.6 Eaton Corp. (Ireland)
    • 9.6.1 Overview
    • 9.6.2 Financial Performance
    • 9.6.3 Product Outlook
    • 9.6.4 Key Developments
  • 9.7 Herbert Waldmann GmbH & Co. Kg (Waldmann Lighting) (Germany)
    • 9.7.1 Overview
    • 9.7.2 Financial Performance
    • 9.7.3 Product Outlook
    • 9.7.4 Key Developments
  • 9.8 H.E. Williams (US)
    • 9.8.1 Overview
    • 9.8.2 Financial Performance
    • 9.8.3 Product Outlook
    • 9.8.4 Key Developments
  • 9.9 NAME Energy Group (MHT Lighting) (US)
    • 9.9.1 Overview
    • 9.9.2 Financial Performance
    • 9.9.3 Product Outlook
    • 9.9.4 Key Developments
  • 9.10 Ubiquity Networks (US)
    • 9.10.1 Overview
    • 9.10.2 Financial Performance
    • 9.10.3 Product Outlook
    • 9.10.4 Key Developments

10 KEY DEVELOPMENTS

  • 10.1 Product Launches/Developments
  • 10.2 Mergers and Acquisitions
  • 10.3 Business Expansions
  • 10.4 Partnerships and Collaborations

11 Appendix

  • 11.1 Related Research