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アクティブネットワーク管理市場:コンポーネント、用途、エンドユーザー、地域別、2026~2032年

Active Network Management Market By Component, Application, End-User, & 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
アクティブネットワーク管理市場:コンポーネント、用途、エンドユーザー、地域別、2026~2032年
出版日: 2025年04月29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

アクティブネットワーク管理(ANM)市場の評価-2026~2032年

太陽光や風力などの再生可能エネルギー源の送電網への統合が世界中で進んでいます。政府や電力会社が環境目標を達成するため、よりクリーンなエネルギーへの移行を優先させる中、分散型エネルギー資源の管理の複雑さが市場の成長を著しく高め、2024年には12億7,000万米ドル、2032年には40億1,000万米ドルに達します。

ANMシステムは、これらのリソースをリアルタイムでモニタリング・制御し、より効率的なエネルギー配分を可能にし、送電網の不安定化を防ぐためにますます重要になってきています。この需要は、グリッドの回復力を向上させ、運用コストを下げる必要性によって悪化しており、ANMはエネルギー管理の将来において重要なコンポーネントとなっています。

アクティブネットワーク管理市場定義/概要

アクティブネットワーク管理は、電気ネットワークの運用と制御をリアルタイムで最適化するために使用される一連の技術と戦略です。その主要目的は、特に再生可能エネルギー源の利用を通じて、電力網の効率と信頼性を向上させることです。アプリケーションには、需要と供給のバランス、エネルギー貯蔵の管理、分散型エネルギー資源の統合などがあります。ANMの将来は、複雑化する送電網インフラ、先進的データ分析、先進的予測能力をサポートし、よりスマートで強靭なエネルギーシステムへの道を開く能力にあります。

再生可能エネルギー源の統合拡大は、アクティブネットワーク管理市場を牽引するか?

先進的グリッド管理ソリューションの需要が高いため、再生可能エネルギー源の統合の拡大は、アクティブネットワーク管理(ANM)市場の重要な促進要因となっています。太陽光や風力などの再生可能エネルギー源は、本質的に変動が大きく分散型であるため、系統の安定性を維持しながら需給バランスを取ることが難しいです。ANMシステムは、リアルタイムのモニタリング、予測分析、自動制御を提供し、これらの断続的なエネルギー源の統合を最適化するのに役立ちます。この機能は、エネルギーミックスに占める自然エネルギーの割合が増加する中で、送電網の信頼性と効率を確保するために不可欠です。

例えば、Siemens・エナジーは2024年7月、太陽光発電や風力発電の比率が高い地域の送電網の安定性と効率を改善することを目的とした、高再生可能エネルギー送電網向けに設計された新しいANMソリューションを発表しました。一方、欧州委員会は2024年6月、地域のエネルギーミックスに占める再生可能エネルギーの割合を高めることを含むEUのグリーンディール目標を支援するため、先進的なANMソリューションに1億ユーロを投資すると発表しました。これらの構想は、変化するエネルギー環境に適応し、安定的で効率的なエネルギー配給を確保するために、先進的ANMシステムが必要であるという幅広い認識を反映したものです。

データ量の増加とネットワークの複雑化は、アクティブネットワーク管理市場の成長を妨げるか?

データ量の増加とネットワークの複雑化は、アクティブネットワーク管理市場の成長に大きな課題をもたらします。再生可能エネルギー源のような多様で分散したエネルギー資源の統合が一般的になるにつれ、リアルタイムでの意思決定に必要な、生成されるデータ量も増加しています。このようなデータの爆発的な増加に直面して、ネットワークパフォーマンスの正確なモニタリング、制御、最適化を確実に行うには、先進的分析と堅牢なデータ管理ソリューションが必要です。この膨大な量のデータを管理することの複雑さと、複数のネットワークコンポーネントにわたるシームレスな統合の必要性が相まって、既存のインフラに負担がかかり、市場の成長が阻害される可能性があります。

さらに、スマートグリッドや相互接続されたデバイスの普及によってネットワークが複雑化することで、新たな難題が増えています。アクティブネットワーク管理システムは、複数のソースからの多様なデータストリームを処理できなければならないです。このような複雑性に対処するための先進的システムが必要になるため、導入コストや運用コストが高くなり、ANMソリューションの導入が遅れる可能性があります。組織がこのような課題に取り組む中で、増大するデータとネットワーク需要を効率的に管理・活用するソリューションが開発されるまで、市場の成長率は鈍化する可能性があります。

目次

第1章 イントロダクション

  • 市場の定義
  • 市場セグメンテーション
  • 調査手法

第2章 エグゼクティブサマリー

  • 主要調査結果
  • 市場概要
  • 市場ハイライト

第3章 市場概要

  • 市場規模と成長の可能性
  • 市場動向
  • 市場促進要因
  • 市場抑制要因
  • 市場機会
  • ポーターのファイブフォース分析

第4章 アクティブネットワーク管理市場:コンポーネント別

  • ソフトウェア
  • ハードウェア

第5章 アクティブネットワーク管理市場:用途別

  • 配電網管理
  • 再生可能エネルギー統合
  • デマンドレスポンス管理
  • マイクログリッド管理
  • 電気自動車(EV)充電管理
  • 資産管理
  • ネットワークモニタリングと制御

第6章 アクティブネットワーク管理市場:エンドユーザー別

  • 公益事業
  • 産業用
  • 商業
  • 住宅用
  • 官公庁

第7章 地域分析

  • 北米
  • 米国
  • カナダ
  • メキシコ
  • 欧州
  • 英国
  • ドイツ
  • フランス
  • イタリア
  • アジア太平洋
  • 中国
  • 日本
  • インド
  • オーストラリア
  • ラテンアメリカ
  • ブラジル
  • アルゼンチン
  • チリ
  • 中東・アフリカ
  • 南アフリカ
  • サウジアラビア
  • アラブ首長国連邦

第8章 市場力学

  • 市場促進要因
  • 市場抑制要因
  • 市場機会
  • COVID-19の市場への影響

第9章 競合情勢

  • 主要企業
  • 市場シェア分析

第10章 企業プロファイル

  • ABB
  • Cisco Systems
  • Schneider Electric
  • Siemens
  • General Electric
  • Itron
  • Landis+Gyr
  • IBM Corporation
  • Oracle Corporation
  • Smarter Grid Solutions
  • Indra Sistemas
  • Camlin Group
  • Ziv(company)
  • Argand Solutions

第11章 市場展望と機会

  • 新興技術
  • 今後の市場動向
  • 投資機会

第12章 付録

  • 略語リスト
  • 供給源と参考文献
目次
Product Code: 30624

Active Network Management Market Valuation - 2026-2032

Renewable energy sources like solar and wind are increasingly being integrated into power grids around the world. As governments and utilities prioritize the transition to cleaner energy to meet environmental goals, the complexity of managing distributed energy resources increasing significantly market growth surpassing USD 1.27 Billion in 2024 and reaching USD 4.01 Billion by 2032.

ANM systems are becoming increasingly important for real-time monitoring and control of these resources, enabling more efficient energy distribution and preventing grid instability. This demand is exacerbated by the need to improve grid resilience and lower operational costs, making ANM a critical component in the future of energy management is expected to grow at a CAGR of about 15.50% from 2026 to 2032.

Active Network Management Market: Definition/ Overview

Active Network Management (ANM) is a set of technologies and strategies used to optimize the operation and control of electrical networks in real time. Its primary goal is to improve the efficiency and reliability of power grids, particularly through the use of renewable energy sources. Applications include balancing supply and demand, managing energy storage, and enabling the integration of distributed energy resources. The future of ANM lies in its ability to support increasingly complex grid infrastructures, advanced data analytics, and enhanced predictive capabilities, paving the way for smarter, more resilient energy systems.

Will Growing Integration of Renewable Energy Sources Drive the Active Network Management Market?

The growing integration of renewable energy sources is a significant driver for the Active Network Management (ANM) market, as advanced grid management solutions are in high demand. Renewable energy sources such as solar and wind are inherently variable and decentralized, making it difficult to balance supply and demand while maintaining grid stability. ANM systems provide real-time monitoring, predictive analytics, and automated control to help optimize the integration of these intermittent energy sources. This capability is critical for ensuring grid reliability and efficiency as the proportion of renewables in the energy mix increases.

For instance, in July 2024, Siemens Energy announced a new ANM solution designed for high-renewable grids that aims to improve grid stability and efficiency in areas with significant solar and wind energy contributions. Meanwhile, in June 2024, the European Commission announced a €100 million investment in advanced ANM solutions to support the EU's Green Deal goals, which include increasing renewable energy's share of the regional energy mix. These initiatives reflect a broader recognition of the need for advanced ANM systems to adapt to the changing energy landscape and ensure stable, efficient energy distribution.

Will Increasing Data Volumes and Network Complexity Pose the Growth of the Active Network Management Market?

Increasing data volumes and network complexity pose significant challenges to the active network management (ANM) market's growth. As the integration of diverse and distributed energy resources, such as renewable sources, becomes more common, so does the amount of data generated and required for real-time decision-making. To ensure accurate monitoring, control, and optimization of network performance in the face of this data explosion, advanced analytics and robust data management solutions are required. The complexity of managing this massive amount of data, combined with the need for seamless integration across multiple network components, can strain existing infrastructure and stymie market growth.

Furthermore, the growing complexity of networks, driven by the proliferation of smart grids and interconnected devices, adds a new layer of difficulty. Active Network Management systems must be able to handle and process diverse data streams from multiple sources, which requires sophisticated and often expensive technology. The need for advanced systems to address these complexities may result in higher implementation and operational costs, potentially slowing the adoption of ANM solutions. As organizations deal with these challenges, the rate of market growth may slow until solutions are developed to efficiently manage and leverage growing data and network demands.

Category-Wise Acumens

Will Rising Adoption of Software Propel the Active Network Management Market?

The growing adoption of software in the active network management (ANM) market is expected to significantly accelerate its growth. Software solutions provide advanced analytics, real-time monitoring, and automation capabilities that are critical for optimizing energy management and incorporating renewable energy sources, supporting its dominance. Recent developments support this trend. For instance, in April 2024, Schneider Electric launched its EcoStruxure Power Design software, with the goal of improving real-time monitoring and control in energy networks. This move demonstrates how software innovations are improving the capabilities of ANM systems while driving demand.

In August 2024, Siemens also introduced its new cloud-based ANM software platform with the goal of improving grid reliability and efficiency. The platform uses artificial intelligence to predict and manage energy demand, reflecting the industry's growing reliance on sophisticated software solutions. These advancements show how software is not only improving the functionality of ANM systems, but also driving broader adoption across multiple sectors, thereby accelerating market growth.

The fastest growing segment is hardware, which is being driven by an increase in demand for physical infrastructure to support advanced network management solutions. As networks become more complex and require improved data collection and control capabilities, the demand for reliable and scalable hardware, such as sensors, controllers, and communication devices, grows rapidly. This expansion is driven by ongoing advancements in hardware technology and the growing integration of hardware and software systems to provide comprehensive network management solutions.

Will Rising Sales through Utilities Drive the Growth of Active Network Management Market?

The utility sales are expected to hold major share in the active network management (ANM) market. Utilities are increasingly turning to ANM solutions to improve grid performance, integrate renewable energy, and manage distributed energy resources more effectively. Recent industry developments support this trend. For example, in June 2024, Duke Energy announced a significant investment in ANM technologies as part of its strategy to improve grid reliability and facilitate the transition to cleaner energy sources. This investment emphasizes the importance of utilities in developing ANM solutions and expanding their market presence.

Furthermore, in July 2024, the US Department of Energy awarded several grants to utility companies to implement advanced ANM systems aimed at modernizing grid infrastructure and improving energy management. This government support emphasizes the growing importance of utilities in driving the adoption of ANM technologies. By investing in and implementing these systems, utilities not only improve operational efficiency but also help to drive market growth for ANM solutions.

The commercial segment is expanding at the fastest rate, owing to the growing use of ANM solutions to optimise energy use, reduce operational costs, and improve sustainability in commercial buildings. As businesses strive to improve their energy management practices and use data-driven insights to make better decisions, the demand for ANM solutions in the commercial sector is rapidly increasing. This expansion reflects a larger trend in commercial real estate toward energy efficiency and smarter building technologies.

Country/Region-wise

Will High Adoption of New Technologies in North America Drive the Active Network Management Market?

North America's rapid adoption of new technologies is reason leading to the regions dominance in the active network management (ANM) market. The region's advanced infrastructure and significant investments in smart grid and digital technologies are improving the efficiency and capabilities of network management systems. In recent years, major utility companies in North America have integrated ANM solutions to optimize grid operations and improve reliability. For instance, in June 2024, Duke Energy announced a multi-million-dollar investment in advanced network management systems to improve grid resilience and support its clean energy transition objectives. This trend demonstrates how the region's commitment to adopting cutting-edge technology is driving growth in the ANM market.

Furthermore, government initiatives and regulatory support are speeding up the adoption of ANM technologies in North America. The US Department of Energy's funding programs, such as the Smart Grid Investment Grant Program, provide financial assistance to utilities for the deployment of advanced grid management technologies. In August 2024, the Federal Energy Regulatory Commission (FERC) proposed new regulations to encourage the use of advanced network management tools, thereby driving market growth. These regulatory developments highlight North America's proactive approach to improving its energy infrastructure through technological advancements, which is fueling the region's ANM market growth.

Will Increasing Rapid Urbanization in Asia-Pacific Propel the Active Network Management Market?

Rapid urbanization in the Asia-Pacific region is enabling the region exhibit rapid growth in the active network management (ANM) market. As cities in China and India grow in size, there is a greater need for advanced network management systems to meet the increased demand for efficient energy distribution and management. In March 2024, Grid Corporation announced a major initiative to integrate smart grid technologies throughout its urban areas to support the country's growing population and infrastructure. This project, part of China's larger effort to modernize its power grid, entails deploying sophisticated ANM solutions to manage the complex energy needs of growing cities.

In July 2024, the Indian Ministry of Urban Development launched a new initiative to improve major city infrastructure through the use of smart grid technology. This initiative is expected to increase demand for ANM solutions as cities seek to manage rising energy consumption and optimize grid operations. Rapid urbanization and supportive government policies are accelerating the adoption of ANM technologies in the Asia-Pacific region, establishing it as a key growth area for the market.

Competitive Landscape

The competitive landscape of the Active Network Management (ANM) market is characterized by a dynamic mix of technology innovators, solution providers, and system integrators. Companies are focusing on differentiating themselves through advanced analytics, real-time monitoring capabilities, and seamless integration with existing infrastructure. Emerging trends include increased collaboration between technology vendors and utilities to develop customized solutions, as well as investments in research and development to enhance system capabilities. Additionally, strategic partnerships and mergers are common as firms seek to expand their service portfolios and market reach, driving innovation and competition within the sector.

Some of the prominent players operating in the active network management market include:

ABB

Cisco Systems

Schneider Electric

Siemens

General Electric

Landis+Gyr

IBM Corporation

Oracle Corporation

Smarter Grid Solutions

Camlin Group.

Latest Developments

In March 2024, Oracle expanded its ANM capabilities by incorporating cloud-based analytics, providing utilities with real-time insights into grid performance and allowing for faster response times to network issues.

In February 2024, Cisco introduced a new suite of network management tools aimed at improving the communication infrastructure of active network management systems, resulting in more reliable data transmission across the grid.

In January 2024, Hitachi Energy announced a strategic initiative to deploy its ANM solutions across multiple smart city projects in Asia, with a focus on improving grid flexibility and promoting sustainable urban development.

In April 2024, GE released a new version of its ANM system with improved cybersecurity features, addressing growing concerns about grid vulnerability in the face of rising cyber threats.

Active Network Management Market, By Category

  • Component:
  • Software
  • Hardware
  • Application:
  • Distribution Grid Management
  • Renewable Energy Integration
  • Demand Response Management
  • Microgrid Management
  • Electric Vehicle (EV) Charging Management
  • Asset Management
  • Network Monitoring and Control)
  • End-User:
  • Utilities
  • Industrial
  • Commercial
  • Residential
  • Government and Public Sector
  • Region:
  • North America
  • Europe
  • Asia-Pacific
  • Latin America
  • Middle East & Africa

TABLE OF CONTENTS

1. Introduction

  • Market Definition
  • Market Segmentation
  • Research Methodology

2. Executive Summary

  • Key Findings
  • Market Overview
  • Market Highlights

3. Market Overview

  • Market Size and Growth Potential
  • Market Trends
  • Market Drivers
  • Market Restraints
  • Market Opportunities
  • Porter's Five Forces Analysis

4. Active Network Management Market, By Component

  • Software
  • Hardware

5. Active Network Management Market, By Application

  • Distribution Grid Management
  • Renewable Energy Integration
  • Demand Response Management
  • Microgrid Management
  • Electric Vehicle (EV) Charging Management
  • Asset Management
  • Network Monitoring and Control

6. Active Network Management Market, By End-User

  • Utilities
  • Industrial
  • Commercial
  • Residential
  • Government and Public Sector

7. Regional Analysis

  • North America
  • United States
  • Canada
  • Mexico
  • Europe
  • United Kingdom
  • Germany
  • France
  • Italy
  • Asia-Pacific
  • China
  • Japan
  • India
  • Australia
  • Latin America
  • Brazil
  • Argentina
  • Chile
  • Middle East and Africa
  • South Africa
  • Saudi Arabia
  • UAE

8. Market Dynamics

  • Market Drivers
  • Market Restraints
  • Market Opportunities
  • Impact of COVID-19 on the Market

9. Competitive Landscape

  • Key Players
  • Market Share Analysis

10. Company Profiles

  • ABB
  • Cisco Systems
  • Schneider Electric
  • Siemens
  • General Electric
  • Itron
  • Landis+Gyr
  • IBM Corporation
  • Oracle Corporation
  • Smarter Grid Solutions
  • Indra Sistemas
  • Camlin Group
  • Ziv (company)
  • Argand Solutions

11. Market Outlook and Opportunities

  • Emerging Technologies
  • Future Market Trends
  • Investment Opportunities

12. Appendix

  • List of Abbreviations
  • Sources and References