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市場調査レポート
商品コード
1615109
IoTノードおよびゲートウェイ市場:地域別、2023年~2030年IoT Node and Gateway Market by Component, Connectivity, End-User, & Region for 2023 - 2030 |
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IoTノードおよびゲートウェイ市場:地域別、2023年~2030年 |
出版日: 2024年09月18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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Verified Market Researchによると、IoTノードおよびゲートウェイ市場規模は2021年に約3,999億3,000万米ドルの市場規模に達し、2023年から2030年にかけてCAGR 6.6%で成長し、2030年には7,084億9,000万米ドルの評価額に達すると予測されています。5Gネットワークの人気の高まりは、スマートデバイスと接続ネットワークへの依存を煽り、IoTノードおよびゲートウェイの需要を促進しています。また、あらゆる規模のビジネスにおけるクラウドベースのコンピューティングの統合は、製造、自動車、家電、その他を含む様々な分野でのIoTノードおよびゲートウェイの採用を必要とすると予測されています。
IoTノードおよびゲートウェイ市場定義/概要
モノのインターネット(IoT)を考えるとき、IoTノードおよびゲートウェイは、デバイスとインターネット間のシームレスな通信とデータ交換を可能にする2つの重要なコンポーネントです。IoTノードは、IoTデバイスまたはIoTエンドポイントとも呼ばれます。これは、アクチュエーター、センサー、データ収集技術を統合した物理デバイスです。IoTノードはIoTエコシステムからデータを収集し、それを中央ハブに送信してさらに分析・処理します。一方、IoTゲートウェイは、IoTノードを接続し、IoTネットワークとインターネット間の通信を可能にする中央ハブとして機能します。IoTゲートウェイは、インターネットが使用する標準化されたプロトコルである
IoTゲートウェイは、インターネットによって使用される標準化されたプロトコルと、IoTデバイスによって使用される多様なプロトコルの間のトランスレーターであり、シームレスなデータ収集やデータ交換を可能にします。
主に、IoTノードはIoTネットワークのエッジに配置されたデータ収集デバイスであり、IoTゲートウェイはIoTネットワークとインターネット間の通信とデータ処理を促進する中央ハブです。これらの技術はどちらもIoTエコシステムのバックボーンを形成し、さまざまな接続デバイスからのデータの収集、トランスミッション、分析を可能にします。
様々な分野での5Gネットワークの出現に伴うIoTソリューションの導入の増加は、ヘルスケア、家電、その他の分野でのデータ収集、伝送、分析プロセスを促進すると予測されています。さらに、今後のスマートシティプロジェクトとスマートデバイスは、IoTノード需要をさらに押し上げると思われます。
これらのデバイスを接続・管理するIoTノードやゲートウェイの需要もさらに高まる。
同様に、日々のライフスタイルにおける接続デバイスの普及は、効率的で耐久性のあるデータ収集、送信、分析ツールに対する需要を促進すると予測されます。データ管理の必要性は、IoTアプリケーションのためのIoTノードおよびゲートウェイソリューションの使用を増加させ、市場の実質的な成長の配列を作成する上で重要な役割を果たしています。
人工知能、エッジコンピューティング、低電力広域ネットワーク(LPWAN)などのIoTソリューションの統合により、データの管理がますます可能になっています。IoTノードおよびゲートウェイは、データの収集とクラウドベースのプラットフォームへの送信だけでなく、貴重な洞察の獲得、業務効率の改善、意思決定の最適化にも役立ちます。データの洞察と分析に対するニーズの高まりは、市場にとって好機となることが予想されます。
さらに、世界各国の政府は、さまざまな分野の生産性を向上させるために、IoTの研究開発を支援し、資金を提供しています。IoTノードやゲートウェイの管理は、スムーズな交通管理構造や、スマートソリューション、セキュリティ技術、スマートカメラによるエネルギー保全で増加しています。さらに、様々な行政が将来のスマートシティの成長のために新しいIoT研究プロジェクトに資金を提供しており、これは市場プレーヤーに大きな機会を与えると思われます。
インターネット、エッジコンピューティング、クラウドベースのコンピューティング、人工知能、機械学習、その他の接続ネットワークを通じた大量のデータの収集、トランスミッション、分析の増加は、データの脆弱性を増大させる。IoTノードおよびゲートウェイの統合にもかかわらず、一般に使用されるプラットフォーム上で重要なデータが交換されるため、サイバー犯罪活動は激化すると予測されます。
欧州連合(EU)で施行されている一般データ保護規則(GDPR)によると、データ規制とIoTアプリケーションの複雑さは、IoT展開に課題をもたらしています。そのため、ユーザーデータを保護し、法的な影響を回避する必要があるため、企業による導入が阻害され、市場の成長を抑制しています。
さらに、IoTノードやゲートウェイが従う標準的なインターフェースやプロトコルが欠如しているため、データ交換に課題があり、これらのソリューションのシームレスな相互運用性と採用の妨げとなっています。IoT技術、データ分析、サイバーセキュリティを扱う人材不足は、IoTノードおよびゲートウェイの採用をさらに妨げる可能性が高いです。
とりわけ、ネットワーク・インフラとIoTソリューションの開発には高い初期費用がかかるため、特に中小企業はIoT技術の採用を躊躇すると予測されます。これらの要因はすべて、市場の拡大を妨げる障害として作用すると予測されます。
According to Verified Market Research, IoT Node And Gateway Market size reached a market size of about USD 399.93 Billion in 2021, and is projected to reach a valuation of USD 708.49 Billion by 2030, growing at a CAGR of 6.6% from 2023 to 2030. Growing popularity of 5G networks has incited the dependency on smart devices and connectivity networks is driving the demand for IoT node and gateway. Also, the integration of cloud-based computing in businesses of all sizes is projected to necessitate the adoption of IoT node and gateway across various sectors, including manufacturing, automotive, consumer electronics, and others.
IoT Node And Gateway Market: Definition/Overview
When considering the Internet of Things (IoT), an IoT node and an IoT gateway are two vital components that permit seamless communication and data exchange between devices and the internet. An IoT node can also be referred to as an IoT device or IoT endpoint. It is a physical device integrated with actuators, sensors, and data-gathering technologies. They collect the data from the IoT ecosystem and transmit it to a central hub for further analysis and processing. On the other hand, the IoT gateway acts as a central hub that connects IoT nodes and enables communication between the IoT network and the Internet. IoT gateway is a translator between the
standardized protocols used by the internet and the diverse protocols used by IoT devices, allowing seamless data collection or exchange.
Primarily, IoT nodes are the data-collecting devices placed at the edge of the IoT network, while IoT gateways are the central hubs that facilitate communication and data processing between the IoT network and the Internet. Both of these technologies form the backbone of the IoT ecosystem, enabling the gathering, transmission, and analysis of data from different connected devices.
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The rising implementation of IoT solutions along with the emergence of 5G networks across various sectors is projected to steer up the data collection, transmission, and analysis process within the healthcare, consumer electronics, and other sectors. Additionally, the upcoming smart city projects and smart devices will further
drive the demand for IoT nodes and gateways to connect and manage these devices.
Similarly, penetration of connective devices in day-to-day lifestyle is projected to fuel the demand for an efficient and durable data collecting, transmitting, and analyzing tool. The necessity of data management plays crucial in increasing the use of IoT node and gateway solutions for IoT applications, creating a substantial array of growth for the market.
The integration of IoT solutions such as artificial intelligence, edge computing, and low-power wide-area networks (LPWAN) is increasingly enabling the management of data. IoT nodes and gateways help collect and transmit data to cloud-based platforms as well as acquire valuable insights, improve operational efficiency, and optimize decision-making. The growing need for data insights and analytics is projected to prove opportunistic for the market.
Furthermore, governments across the world are backing and funding the research and development of IoT to improve productivity in various sectors. The administration of IoT nodes and gateways is increasing in smooth traffic management structures, and energy preservation through smart solutions, security technologies, and smart cameras. Moreover, various administrations are funding new IoT study projects for the growth of smart cities in the future which will give huge opportunities to the market players.
The rise in the collection, transmission, and analysis of large amounts of data through the internet, edge computing, cloud-based computing, artificial intelligence, machine learning, and other connectivity networks increases the vulnerabilities of data. Despite the integration of IoT nodes and gateway, cybercriminal activities are projected to intensify owing to the exchange of important data on the publicly used platform.
According to the General Data Protection Regulation (GDPR) practiced in the European Union, the complexity of data regulation and IoT applications pose challenges for IoT deployments. Thus, the need to protect user data and avoid legal repercussions inhibits its adoption by businesses, restraining the growth of the market.
Additionally, the lack of standard interfaces and protocols followed by IoT node and gateways results in challenging the data exchange, hampering the seamless interoperability and adoption of these solutions. The shortage of workforce for handling IoT technologies, data analytics, and cybersecurity is likely to further hinder the adoption of IoT nodes and gateways.
Above all, high initial costing for development of network infrastructure and IoT solutions are projected to deter businesses, particularly smaller ones, from adopting IoT technology. These factors are all predicted to act as a blockade hampering the expansion of the market.
Category-wise Acumens
Which Component Holds a Maximum Share in the IoT Node And Gateway Market?
The hardware segment is projected to hold a maximum share of the market. The growth is primarily attributed to the increasing use of connectivity ICs in IoT devices. This is projected to increase the demand for connectivity solutions such as Bluetooth, Wi-Fi, and others, creating a wider scope of adoption of hardware.
The advantageous factors such as the efficiency and reliability of the hardware are projected to qualify it as a vital component of the IoT devices. Thereby, increasing its demand during the forecast period.
Also, its ability to support diverse applications and security requirements and its constant advancements are anticipated to fuel the demand for hardware.
The efficiency and convenience offered by the IoT technologies is enabling its surging use in the consumer electronic sectors. These factors are projected to bolster the adoption of IoT solutions, which will indirectly propel the use of IoT node and gateway technologies.
Also, the growing demand for smartphones, smart wearables, and other consumer electronics is projected to fuel the demand for IoT technologies for excellent efficiency and convenience. Thus, the increasing use of consumer electronics is directly proportional to the surge in sales of IoT nodes and gateways.
Furthermore, the government initiatives supporting the execution of smart cities and smart homes projects are likely to bolster the application of consumer electronics integrated with IoT solutions. All these factors are projected to facilitate the growth of the IoT and gateway market, wherein the consumer electronics segment holds the major share.
Which segment is estimated to Dominate the Connectivity Category?
The growing use of Wi-Fi in office premises, homes, automobiles, healthcare, and other public spaces is anticipated to skyrocket the application of the Wi-Fi segment. Its increasing application is predicted to help the segment dominate the connectivity category from 2023 to 2030.
In addition to this, Wi-Fi's high data transfer speed on a real-time basis boosts its application in various sectors, creating a suitable environment for its adoption.
Moreover, easy availability and the security aspects of Wi-Fi support the penetration of IoT devices in day-to-day activities. Thus, the popularity of Wi-Fi and IoT technologies is anticipated to create significant growth prospects for the market.
A growing number of tech companies is expected to offer a robust IoT ecosystem for other diverse companies, startups, and research institutions. Thereby, contributing toward making North America a suitable option for generating maximum revenue from IoT Node And Gateway Market.
The emergence of 5G networks, edge computing, artificial intelligence, and other networking solutions in the region for further application in IoT systems is anticipated to boost the adoption of IoT nodes and gateways in the coming years.
Also, the government's continuous effort toward transforming cities and homes to smart cities and smart homes in support of the technological advancements in the U.S. and Canada plays a pivotal role in steering market growth.
Asia Pacific is estimated to exhibit substantial growth during the forecast period owing to the increasing presence of IoT industry across the globe. Also, the adoption of automation and cloud-based services and technologies is likely to create lucrative opportunities for the IoT node and gateway.
Growing residential, commercial, and IT sector in emerging economies such as China, India, Japan, and South Korea supports expansion of the market in the region.
The government of India is supporting initiatives such as Digital India and Smart Cities Mission and this is projected to help expand the IoT industry. Such initiatives taken up by diverse countries are likely to pave the way for the success of IoT node and gateway market in the coming years.
Manufacturers are currently entering into strategic activities such as collaborations, partnerships, mergers, and acquisitions to focus on investing in expanding the business in the coming years. Furthermore, the growing penetration of internet into the latest technologies is projected to boost the demand for IoT node and gateways in the coming years. According to Verified Market Research, the prominent players with a strong foothold in the market include:
Intel Corporation, Huawei Technologies, NXP Semiconductors, Texas Instruments Incorporated, Cisco Systems, Hewlett Packard Enterprise, TE Connectivity, Advantech, Dell Technologies, Microchip Technology, Notion, IBM Corporation, Helium System, Inc., Beep, Inc., Embitel Technologies, Particle Industries, Inc., Nexcom International Co., Ltd, Seirra Wireless, Eurotech S.P.A, Cradlepoint, Inc., Volansys Technologies, Samsara Networks, Inc., Lantronix, Mitsubishi Electric Corporation, Estimote, Inc., Aaeon Technology, Inc., STMicroelectronics N.V., Robert Bosch GmbH.
Latest Developments:
In October 2020, NXP Semiconductors N.V. entered into a partnership with Au-Zone Technologies to widen eIQ Machine Learning (ML) software development environment of NXP with easy-to-operate ML technologies. They also worked toward expanding silicon optimized inference engines for Edge ML software.
In April 2021, Intel Corporation developed novel 3rd Generation Intel Xeon Scalable mainframes along with Intel's portfolio of Intel Optane-determined memory and storing, Ethernet connectors, FPGAs, and enhanced software tools.
In February 2021, Huawei Technologies and China Mobile developed the world's first 4.9 GHz profitable LampSite network in Shanghai (China). This remained the first time that a collective bandwidth of 200 MHz on the 2.6 and 4.9 GHz groups and Distributed Massive MIMO were concurrently implemented in digital indoor networks.
In 2023, STMicroelectronics N.V. developed as added new software
X-CUBE-AWS-H5
to expand its STM32Cube development tools. This expansion enables seamless and secure connection between high-performing Internet of Things (IoT) devices to the AWS cloud. It is integrated with set of libraries and applications specially designed for microcontrollers belonging to the STM32H5 series.
In May 2023, Cisco Systems, Inc. entered into a partnership with United States Golf Associations to use Cisco's technologies and expertise to expand USGA's technological infrastructure.