United States Critical Communication Market By Component (Hardware, Software, Service), By Technology (Land Mobile Radio, Long Term Evolution, Others), By Industry (Public Safety, Transportation, Utilities, Mining, and Others), By End User (Government Agencies, Businesses, and Individuals), By Region, Competition Forecast & Opportunities, 2018-2028F

Published Date: November - 2024 | Publisher: MIR | No of Pages: 320 | Industry: ICT | Format: Report available in PDF / Excel Format

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United States Critical Communication Market By Component (Hardware, Software, Service), By Technology (Land Mobile Radio, Long Term Evolution, Others), By Industry (Public Safety, Transportation, Utilities, Mining, and Others), By End User (Government Agencies, Businesses, and Individuals), By Region, Competition Forecast & Opportunities, 2018-2028F

United States Critical Communication market is anticipated to grow at a high CAGR in the forecast period 2024-2028. The increasing demand for reliable and secure communication solutions in critical operations is driving the market's growth. Industries such as public safety, emergency services, transportation, utilities, and defense are recognizing the importance of efficient communication systems to ensure a prompt response, real-time data exchange, and effective decision-making during emergencies and mission-critical scenarios.

The deployment of private Long-Term Evolution (LTE) or 5G networks is Driving the Market in the Forecast Period

The United States Critical Communication Market has been significantly influenced by the deployment of private Long-Term Evolution (LTE) or 5G networks, as industries recognize the need for dedicated and secure communication solutions tailored to their specific needs. The shift towards private LTE or 5G networks has emerged as a game-changer, particularly in sectors where traditional public networks may be insufficient or unreliable. Industries such as public safety, utilities, transportation, and defense are increasingly investing in these private networks to ensure seamless and efficient communication during mission-critical operations.

In addition, private LTE and 5G networks offer several key advantages such as improved coverage and reliability that cater to the unique requirements of critical communication. In remote or challenging terrains where public networks may have limited reach, private networks can be deployed to ensure continuous communication in those areas. This is especially crucial for first responders, who often operate in areas with poor or no traditional network coverage during emergencies. Enterprises dealing with sensitive information or facing cyber security threats can benefit from the added layers of security and control that private networks offer. Moreover, private LTE and 5G networks provide higher data transfer rates and lower latency compared to traditional networks, enabling real-time data exchange, video streaming, and faster response times. This enhanced capacity is invaluable in situations where immediate access to critical information can save lives and prevent further damage.

Furthermore, private networks offer greater flexibility and customization during critical communication. Therefore, enterprises can design their communication infrastructure to suit their specific needs, allowing for seamless integration of voice, data, and multimedia services on a unified platform. This level of customization enhances operational efficiency and provides better situational awareness during emergencies.

The Growing Demand for Reliable and Secure Communication

In addition, security has become a key enabler behind the demand for reliable critical communication solutions. The increasing cyber-attacks threats and data breaches have emphasized the need for robust cyber security measures. Private networks isolate critical communication from the public internet, reducing the risk of unauthorized access and potential cyber threats. This added layer of security ensures that sensitive information remains confidential and protected during critical operations.

Moreover, industries and agencies often need to collaborate and share information with multiple entities during joint operations. Ensuring that communication systems can seamlessly work together, regardless of the technology or vendor used, promotes better coordination and enhances the efficiency of critical operations. As the demand for public safety and reliable communication continues to grow, industries are investing significantly in modernizing their critical communication infrastructure. This includes adopting advanced communication technologies, upgrading legacy systems, and implementing comprehensive cybersecurity protocols. Thus, the growing demand for reliable and secure communication is driving the market for critical communication in the United States throughout the projected period.

The Increasing Demand for Mission-Critical Communication

The integration of Industrial Internet of Things (IoT) solutions is playing a pivotal role in driving the United States Critical Communication Market. As industries embrace digital transformation, the Industrial IoT has emerged as a transformative technology, connecting devices, machines, and systems to collect and exchange data in real time. This connectivity and data-driven approach is revolutionizing critical communication in various sectors, including public safety, transportation, utilities, and manufacturing. Industrial IoT integration enables seamless communication and coordination between different devices and systems, enhancing operational efficiency, reducing response times, and improving overall safety and reliability. In the realm of public safety, Industrial IoT integration enables the creation of smart and interconnected systems that facilitate efficient emergency response and disaster management. For instance, emergency response vehicles can be equipped with IoT-enabled sensors and communication devices that relay critical information, such as location, environmental conditions, and resource availability, to central command centres and other relevant agencies. This real-time data exchange enables quick decision-making and ensures a more coordinated and effective response to emergencies.

  • In transportation, Industrial IoT integration is revolutionizing logistics and fleet management. IoT sensors embedded in vehicles and cargo enable continuous monitoring of transportation routes, vehicle conditions, and cargo status. This data is communicated in real-time to control centers, enabling better route planning, preventive maintenance, and timely response to any operational issues or incidents, thus improving transportation safety and efficiency.
  • The utilities sector is also benefiting from Industrial IoT integration. Smart grids and connected infrastructure allow utilities companies to monitor and manage energy distribution in real-time, optimizing energy consumption, and proactively detecting faults or outages. This enhanced communication and control lead to improved energy reliability and greater resilience during critical situations.
  • In manufacturing, the integration of Industrial IoT facilitates the concept of Industry 4.0, where machines, robotics, and production lines are interconnected to form smart factories. Real-time data from sensors and devices enable predictive maintenance, process optimization, and better decision-making, resulting in increased productivity, reduced downtime, and improved worker safety.

Overall, the integration of Industrial IoT solutions is driving the United States Critical Communication Market by providing seamless, data-driven communication in critical operations. As industries continue to embrace IoT technologies, the demand for advanced critical communication systems that can handle the influx of real-time data and facilitate efficient decision-making is expected to grow. This trend will further shape the critical communication landscape, enhancing the resilience and effectiveness of communication in various sectors to meet the challenges of a rapidly evolving digital world.

Recent Developments

  • On February 26, 2023, Eastern Communications Ltd., one of the largest mission critical communication technology providers, announced the acquisition of RACOM Corporation, a communications service and technology provider firm. With this acquisition, the company aims to increase its service and distribution platforms in the critical communication by establishing a national presence in 16 service locations in United States.
  • On April 04, 2023, Pavion, a service-based system integrator for fire, safety, security, and critical communications, announced the acquisition of “Security Source”. The acquisition will further expand Pavion's national account, security integration and service capabilities across the United States.

MIR Segment1

Market Segments

The United States critical communication market is segmented into component, technology, industry, end user, region and competitive landscape. Based on component, the market is segmented into hardware, solution, and service. Based on technology, the market is divided into land mobile radio, long term evolution, others. Based on industry, the market is separated into public safety, transportation, utilities, mining, and others. Based on end user, the market is fragmented into government agencies, businesses, and individuals.

Market Players

Major market players in the United States critical communication market are Alteryx Inc., Advent International Corporation, Trimble, Inc, MapLarge, Inc., L3 Harris Technologies, Inc., Bentley Systems, Inc., ESRI, Inc, General Electric Company, Oracle Corporation, Google LLC, and others.

Attribute

Details

Base Year

2022

Historic Data

2018 – 2021

Estimated Year

2023

Forecast Period

2024 – 2028

Quantitative Units

Revenue in USD Million, and CAGR for 2018-2022 and 2023-2028

Report coverage

Revenue forecast, company share, growth factors, and trends

Segments covered

Component

Technology

Industry

End User

Regional scope

West Region, North-East Region, Mid-West Region, South Region

Key companies profiled

Alteryx Inc., Advent International Corporation, Trimble Inc., MapLarge, Inc., L3 Harris Technologies, Inc., Bentley Systems, Inc., ESRI, Inc., General Electric Company, Oracle Corporation, Google LLC.

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