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In-Car Wi-Fi Market to grow by USD 270.54 Billion from 2024-2028, driven by diverse data plans, Report on how AI is redefining the market landscape – Technavio

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NEW YORK, Dec. 9, 2024 /PRNewswire/ — Report with market evolution powered by AI – The global In-car wi-fi market size is estimated to grow by USD 270.54 billion from 2024-2028, according to Technavio. The market is estimated to grow at a CAGR of 49.01% during the forecast period. Wide range of data plans for in-car wi-fi to suit individual needs is driving market growth, with a trend towards big data platform provided by connected cars. However, consumer reluctance to adopt in-car wi-fi poses a challenge. Key market players include AB Volvo, Bayerische Motoren Werke AG, BYD Co. Ltd., Chongqing Changan Automobile Co. Ltd., Dr. Ing. H.c. F. Porsche AG, Ford Motor Co., General Motors Co., Honda Motor Co. Ltd., Kia Motors Corp., Mahindra and Mahindra Ltd., Mercedes Benz Group AG, Mitsubishi Motors Corp., NIO Ltd., Nissan Motor Co. Ltd., Rairdons Subaru of Auburn, Renault SAS, SsangYong Motor Co., Tesla Inc., Toyota Motor Corp., and Volkswagen AG.

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Forecast period

2024-2028

Base Year

2023

Historic Data

2018 – 2022

Segment Covered

Technology (3G and 4G and 5G), Application (Residential and Commercial), and Geography (Europe, APAC, North America, Middle East and Africa, and South America)

Region Covered

Europe, APAC, North America, Middle East and Africa, and South America

Key companies profiled

AB Volvo, Bayerische Motoren Werke AG, BYD Co. Ltd., Chongqing Changan Automobile Co. Ltd., Dr. Ing. H.c. F. Porsche AG, Ford Motor Co., General Motors Co., Honda Motor Co. Ltd., Kia Motors Corp., Mahindra and Mahindra Ltd., Mercedes Benz Group AG, Mitsubishi Motors Corp., NIO Ltd., Nissan Motor Co. Ltd., Rairdons Subaru of Auburn, Renault SAS, SsangYong Motor Co., Tesla Inc., Toyota Motor Corp., and Volkswagen AG

Key Market Trends Fueling Growth

The automotive industry’s expansion of connectivity solutions presents a significant opportunity for Original Equipment Manufacturers (OEMs) to create valuable products for customers, utilizing real-time data. This data, primarily from telematics devices, includes details such as date, time, speed, fuel consumption, and navigation. Annually, this data amounts to 6 MB to 20 MB per customer, totaling over 1 TB for 100,000 vehicles. Stakeholders, including insurance providers, can leverage this data to enhance revenue streams. For instance, usage-based insurance (UBI) can be priced individually based on driving behavior, fostering long-term, profitable customer relationships. CSC’s 2016 introduction of UBI and telematics offerings is a testament to this trend, with more players anticipated during the forecast period. These factors are expected to fuel the growth of the global in-car wi-fi market. 

The In-Car Wi-Fi market is experiencing significant growth with the increasing demand for connectivity on the go. Companies are focusing on providing faster and more reliable internet connections through advanced technologies like 4G, 5G, and LTE. The use of Concepts like vehicle-to-vehicle communication and real-time traffic management is becoming common. The integration of infotainment systems and navigation services is also driving the market. Additionally, the convenience of updating maps and software in real-time is a major advantage. The future of In-Car Wi-Fi looks promising with the implementation of secure and cost-effective solutions. The use of Concepts like trackers and security systems is expected to increase. Overall, the In-Car Wi-Fi market is an exciting space to watch with numerous opportunities for innovation and growth. 

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Market Challenges

The in-car wi-fi market faces challenges in consumer adoption due to the availability of smartphone hotspots and data sharing. However, understanding user needs and expectations is crucial for OEMs to create a successful in-car wi-fi experience. Security concerns may hinder growth, but active user involvement throughout development can ensure a seamless and satisfying solution. These factors may impede market growth during the forecast period.The In-Car Wi-Fi market is experiencing significant growth, with an increasing number of automakers integrating this technology into their vehicles. However, there are challenges that need to be addressed to ensure seamless connectivity and reliable performance. One major challenge is ensuring strong and consistent signals in moving vehicles. Another challenge is providing secure and encrypted connections to protect user data. Additionally, cost and battery consumption are key considerations, as in-car Wi-Fi systems must be energy efficient and affordable for consumers. Finally, compatibility with various devices and operating systems is essential to cater to diverse user needs. Addressing these challenges will be crucial for the continued success and growth of the In-Car Wi-Fi market.

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Segment Overview

This in-car wi-fi market report extensively covers market segmentation by

Technology 1.1 3G and 4G1.2 5GApplication 2.1 Residential2.2 CommercialGeography 3.1 Europe3.2 APAC3.3 North America3.4 Middle East and Africa3.5 South America

1.1 3G and 4G- The in-car Wi-Fi market has witnessed significant growth due to the transition from 3G to 4G technology. 3G set the foundation for various smartphone technologies, but 4G offers faster data rates, improved security, and lower power consumption. Major automotive OEMs have adopted 4G LTE for in-car Wi-Fi, with General Motors being the first in 2015. However, the emergence of 5G technology may limit the growth of the 4G in-car Wi-Fi market in the forecast period.

Download complimentary Sample Report to gain insights into AI’s impact on market dynamics, emerging trends, and future opportunities- including forecast (2024-2028) and historic data (2018 – 2022) 

Research Analysis

The In-Car Wi-Fi market is experiencing significant growth due to the increasing demand for seamless connectivity in commercial vehicles. Digital devices such as laptops and tablets are becoming essential tools for both drivers and passengers, requiring reliable internet access on the go. Real-time tracking and fleet management systems, powered by artificial intelligence algorithms, are enhancing driver preferences and improving customer satisfaction. Autonomous vehicles are also embracing connectivity features, offering passengers an exceptional experience through mobile hotspots and infotainment systems. Car manufacturers and tech companies are collaborating to integrate dedicated modems and signal coverage solutions into their vehicles, making the Internet of Things a reality in the automotive industry. Entertainment and infotainment systems are becoming more advanced, offering a wide range of features to keep drivers and passengers engaged and connected.

Market Research Overview

The In-Car Wi-Fi market refers to the provision of wireless internet connectivity within vehicles for passengers’ use. This technology enables seamless internet access during travel, enhancing the in-car experience. It caters to various needs such as entertainment, work, and communication. The market is driven by factors like increasing consumer demand for connectivity, advancements in technology, and the integration of Wi-Fi into vehicle infotainment systems. The market also offers opportunities for collaboration between automotive and telecommunications industries. The future of In-Car Wi-Fi looks promising with the integration of 5G technology and the development of advanced features like real-time traffic updates and vehicle diagnostics.

Table of Contents:

1 Executive Summary
2 Market Landscape
3 Market Sizing
4 Historic Market Size
5 Five Forces Analysis
6 Market Segmentation

Technology3G And 4G5GApplicationResidentialCommercialGeographyEuropeAPACNorth AmericaMiddle East And AfricaSouth America

7 Customer Landscape
8 Geographic Landscape
9 Drivers, Challenges, and Trends
10 Company Landscape
11 Company Analysis
12 Appendix

About Technavio

Technavio is a leading global technology research and advisory company. Their research and analysis focuses on emerging market trends and provides actionable insights to help businesses identify market opportunities and develop effective strategies to optimize their market positions.

With over 500 specialized analysts, Technavio’s report library consists of more than 17,000 reports and counting, covering 800 technologies, spanning across 50 countries. Their client base consists of enterprises of all sizes, including more than 100 Fortune 500 companies. This growing client base relies on Technavio’s comprehensive coverage, extensive research, and actionable market insights to identify opportunities in existing and potential markets and assess their competitive positions within changing market scenarios.

Contacts

Technavio Research
Jesse Maida
Media & Marketing Executive
US: +1 844 364 1100
UK: +44 203 893 3200
Email: media@technavio.com
Website: www.technavio.com/

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SOURCE Technavio

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JAMS Launches AI for Enterprise Job Scheduling: JAX and JAMS MCP, on the Model You Choose

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A new AI agent and an open-standard connector let IT teams query, diagnose, and manage automation in plain language, on the model they choose, with operational data staying inside their own network

LONDON, July 24, 2026 /PRNewswire/ — JAMS Software, an orchestration solution for scheduled and event-driven automation, today announced the general availability of two AI capabilities for enterprise job scheduling: JAX, an AI agent built into the JAMS Web Client, and JAMS MCP, a connector built on the open Model Context Protocol standard that brings JAMS into external AI coding tools. Both capabilities ship at no additional cost as part of JAMS Web.

Automation environments grow faster than the teams that run them. Jobs multiply across SQL Server, Azure Data Factory, Airflow, SAP, JDE, and Banner, and when one fails, finding the root cause often means searching several consoles at once, frequently outside business hours. At the same time, IT leaders carry pressure to adopt AI while staying accountable for where operational data goes. JAX and JAMS MCP close both gaps together.

Full details on how JAX and JAMS MCP work, including the control model behind every action, are available at jamsscheduler.com/product/ai.

JAX is an AI agent that runs inside the JAMS Web Client. It finds jobs, troubleshoots failures, and answers how-to questions in plain language, with each response grounded in the JAMS user guide and checked against a built-in glossary. JAX acts only when a user asks it to. Reads flow freely, and every write action pauses for the user’s explicit approval before it runs. JAX does not learn between sessions, and conversations are not retained on the server.

JAMS MCP is a connector, built on the open Model Context Protocol standard, that brings JAMS into the AI tools engineering teams already use, including Cursor, VS Code with Copilot, Claude Code, Claude Desktop, and Codex. Users query jobs, investigate failures, and manage runs in plain language without leaving their tool.

Both capabilities run inside the customer’s own network and act as the signed-in user, with that user’s exact JAMS permissions. There is no elevated AI account: whatever a user cannot do in the JAMS interface, JAX and JAMS MCP cannot do on that user’s behalf. Every JAX and MCP operation is recorded in its own dedicated log, and changes made through the JAMS API land in the JAMS audit trail like any other change. Customers choose their own AI model, whether a commercial provider such as OpenAI or Anthropic or a model running entirely on their own hardware, and JAMS never trains on customer data. In the current release, neither feature edits or deletes a job, folder, schedule, or agent definition. For teams that must keep operational data within a defined boundary, JAX runs on a local model entirely inside the customer’s own network, so nothing leaves at all.

“Adopting AI usually means giving something up, most often visibility into where your data goes,” said Pete Hegland, Chief Executive Officer of JAMS Software. “We built JAX and JAMS MCP so that trade does not have to happen. Every action runs as the signed-in user, every change waits for approval, and the model itself can run entirely inside your own network.”

“IT teams across the United Kingdom and EMEA tell us the same thing: they want the benefit of AI without losing sight of where their data goes,” said Greg McLaughlin, Account Executive for EMEA at JAMS Software. “JAX and JAMS MCP let them keep operational data inside their own network and still get answers in plain language. That combination is what makes this practical for the teams I work with.”

JAX and JAMS MCP are available now to all JAMS Web customers across the United Kingdom and EMEA, with no separate licence, SKU, or additional cost. AI-assisted creation of new jobs and workflows from a plain-language description is on the roadmap for a future release, gated by the same approvals and permissions as every other action.

Learn how JAX and JAMS MCP work at https://jamsscheduler.com/product/ai.

Fast facts

JAX is an AI agent built into the JAMS Web Client for job scheduling and workflow automation.JAMS MCP is a connector built on the open Model Context Protocol standard, for Cursor, VS Code with Copilot, Claude Code, Claude Desktop, and Codex.Both act as the signed-in user, with that user’s exact JAMS permissions, and there is no elevated AI account.Customers choose the AI model, including a local model that runs entirely inside their own network.JAMS never trains on customer data.Both are available now at no additional cost as part of JAMS Web.

About JAMS Software

Founded in 1987, JAMS Software is an orchestration solution that helps IT teams centralize, automate, and manage scheduled and event-driven jobs across complex, hybrid environments. Over 850 customers rely on JAMS to run their automated workloads. JAMS Software, LLC is headquartered at 108 Patriot Drive, Suite A, Middletown, DE 19709.

Media Contact
Bobby Schmidt, Vice President of Marketing
press@jamssoftware.com
800.261.4267

 

 

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Video: CNPC offers green chemical answer

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BEIJING, July 24, 2026 /PRNewswire/ — A news report from chinadaily.com.cn:

Located on the edge of the Taklamakan Desert in Northwest China’s Xinjiang Uygur autonomous region, the Tarim 1.2 MTA Phase II Ethylene Project and its supporting green and low-carbon demonstration facility of PetroChina Dushanzi Petrochemical Company, a subsidiary of China National Petroleum Corporation, are offering a new example of China’s low-carbon industrial transformation.

Watch the video to discover how CNPC is exploring a cleaner and more circular future for the industry.

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SOURCE chinadaily.com.cn

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Shanghai Electric showcases embodied intelligence robot matrix and AI-native smart factory solutions at WAIC 2026

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Featuring humanoid robots with 41 degrees of freedom, pipe‑inspection robots with ±1mm positioning accuracy, and 51 industrial‑grade AI agents

SHANGHAI, July 24, 2026 /PRNewswire/ — Operations in high-end equipment manufacturing often involve confined spaces, complex objects, and fine manipulation tasks that demand sustained and stable precision. At the recent 2026 World Artificial Intelligence Conference and High-Level Meeting on Global AI Governance (WAIC 2026), Shanghai Electric (SEHK: 02727, SSE: 601727) showcased its comprehensive portfolio of embodied intelligence solutions tailored to a range of industrial scenarios.

Themed “AI for All: Smart Squad, Shining Without Limits,” Shanghai Electric highlighted its capabilities across embodied AI robots, robot core components, and AI-native smart factory solutions, demonstrating end-to-end capabilities spanning complete robot systems, critical parts, industrial software, and smart factory architecture.

“The true value of embodied intelligence lies in understanding real industrial tasks: combining the strength, precision, and stability of machines with human experience and judgment to drive a genuine paradigm of ‘machine-assisted, human-machine collaboration,'” said Wang Chunlei, deputy general manager of the Robotics Business Unit at Shanghai Electric Automation Group.

Shanghai Electric’s robotics portfolio covers five key industrial scenarios: connector insertion, electrical operations, flexible sorting, intelligent assembly, and pipe processing. Highlights include:

“SUYUAN” bipedal humanoid robot: With 41 degrees of freedom for enhanced mobility, it is equipped with a multimodal visual sensing system on the head and torso, along with a dual-battery hot-swap system. It is well-suited for inspection, material handling, and assembly tasks.”TUOYUAN” industrial wheeled humanoid robot: Powered by an embodied intelligence foundation model and force-position hybrid control, it is capable of multi-spec connector insertion, material sorting, and loading/unloading of automotive sheet metal parts.”Mermaid” bionic wheeled humanoid robot: Capable of autonomously identifying buttons, knobs, and air switches, it generates real-time operation paths.Autonomous pipe inner-wall chamfering robot: Designed for confined spaces, it can position and process thousands of hole edges with accuracy within 1 millimeter while transmitting data in real time.

Shanghai Electric also showcased its portfolio of core components ranging from power-output to end effectors. Among them, the planetary roller screw offers more than three times the load capacity of traditional ball screws, while the DexHand dexterous hand is designed to meet diverse gripping and manipulation requirements.

Shanghai Electric launched 51 AI models and agents under its “StarCloud Intelligent Manufacturing” series across three domains: R&D and design, production and manufacturing, and operations and maintenance—covering critical equipment processes such as process optimization and wind power facility maintenance.

These industrial agents are embedded in robotic decision-making systems and the operational logic of AI-native smart factories, transforming industrial expertise into digitized, reusable capabilities. They support production-line scheduling, quality inspection, and predictive maintenance, driving the evolution of manufacturing systems from experience-driven to data-driven operations.

Shanghai Electric also released the “AI-Native Smart Factory Technology White Paper,” proposing an active evolution architecture that enables real‑time, closed‑loop optimization of production data, giving the factory self‑perception, self‑decision, and self‑execution capabilities. Built on First Principles, the AI‑native smart factory vertically integrates process flows, industrial software, agents, and smart equipment to dismantle traditional hierarchies while horizontally bridging data silos. The architecture features three core layers: the AI factory brain as the “control center,” industrial agents and embodied robots as the “execution network,” and the physical twin as the “digital mirror.”

Leveraging its deep industrial expertise and comprehensive solution capabilities, Shanghai Electric will continue to drive the implementation of AI in industrial settings, tackle technical challenges facing embodied intelligence in complex scenarios, accelerate the large‑scale deployment of AI‑native smart factories, and deliver replicable solutions across diverse manufacturing environments.

SOURCE Shanghai Electric

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