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New Delhi: The global spending on multi-access edge computing (MEC<\/a>) is likely to reach $22.7 billion by 2027, from $8.8 billion this year, a new report said on Monday.

According to Juniper Research, this growth of 260 per cent will be driven by increasing requirements for on-premises
machine learning<\/a> and low-latency connectivity; enabled by 5G technology<\/a>.

MEC is a network architecture that moves processing power and digital content to mobile network edges to provide lower latency and faster processing to end users.

The report found that operator partnerships with agile technology companies, such as
AWS<\/a>, IBM<\/a> and Microsoft<\/a>, will be essential in achieving the growth of MEC node roll-outs.

More than 3.4 million MEC nodes will be deployed by 2027; rising from less than 1 million in 2022.

\"Over 1.6 billion mobile users will have access to services underpinned by MEC nodes by 2027, rising from only 390 million in 2022,\" the report noted.

Furthermore,
mobile cloud computing<\/a> is anticipated to be a highly valued MEC service among mobile users over the next five years.

\"By migrating processing power to the cloud, via MEC nodes, users will benefit from faster processing power and devices with smaller form factors,\" the report mentioned.

It identified autonomous vehicles and smart cities as key beneficiaries of increasing MEC roll-outs.

This will reduce network strain by decreasing the physical distance that cellular data will need to travel.

Additionally, the report said that the delivery of digital content, including video streaming, cloud gaming and immersive reality, will benefit from the geographical proximity of MEC nodes and increase value proposition by improving video caching and computational offload.


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多路存取的边缘计算到2027年将达到230亿美元的全球消费

根据杜松的研究,这种增长将由260%增加要求本地机器学习和低延迟连接;通过5 g技术。

  • 2022年更新的5月23日下午坚持
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新德里:全球支出多路存取的边缘计算(MEC)可能会达到227亿美元,到2027年,从今年的88亿美元,一个新的报告周一表示。

根据Juniper研究,这260%的增长将由本地的需求增加机器学习和低延迟连接;通过5 g技术

MEC是一个移动的网络体系结构的处理能力和数字内容移动网络边缘向最终用户提供低延迟和更快的处理。

该报告发现,运营商与敏捷科技公司合作,如AWS,IBM微软将基本实现的增长MEC节点交付。

广告
超过340万MEC节点将在2027年部署;从2022年的不到100万。

“超过16亿移动用户会访问服务支撑MEC节点到2027年,从2022年的3.9亿上升,”该报告指出。

此外,移动云计算预计是一个高度重视MEC服务在移动用户在未来五年。

”处理能力迁移到云端,通过MEC节点,用户将受益于更快的处理能力和设备形成较小的因素,”报告提到。

它发现了自驾车辆和智能城市增加MEC交付的主要受益者。

这将减少网络应变减少蜂窝数据的物理距离需要旅行。

此外,报告说,数字内容的交付,包括视频、云游戏和身临其境的现实,将受益于MEC的地理邻近节点和增加价值主张通过提高视频缓存和计算卸载。


  • 发布于2022年5月23日12:08点坚持
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\"\"
<\/span><\/figcaption><\/figure>
New Delhi: The global spending on multi-access edge computing (MEC<\/a>) is likely to reach $22.7 billion by 2027, from $8.8 billion this year, a new report said on Monday.

According to Juniper Research, this growth of 260 per cent will be driven by increasing requirements for on-premises
machine learning<\/a> and low-latency connectivity; enabled by 5G technology<\/a>.

MEC is a network architecture that moves processing power and digital content to mobile network edges to provide lower latency and faster processing to end users.

The report found that operator partnerships with agile technology companies, such as
AWS<\/a>, IBM<\/a> and Microsoft<\/a>, will be essential in achieving the growth of MEC node roll-outs.

More than 3.4 million MEC nodes will be deployed by 2027; rising from less than 1 million in 2022.

\"Over 1.6 billion mobile users will have access to services underpinned by MEC nodes by 2027, rising from only 390 million in 2022,\" the report noted.

Furthermore,
mobile cloud computing<\/a> is anticipated to be a highly valued MEC service among mobile users over the next five years.

\"By migrating processing power to the cloud, via MEC nodes, users will benefit from faster processing power and devices with smaller form factors,\" the report mentioned.

It identified autonomous vehicles and smart cities as key beneficiaries of increasing MEC roll-outs.

This will reduce network strain by decreasing the physical distance that cellular data will need to travel.

Additionally, the report said that the delivery of digital content, including video streaming, cloud gaming and immersive reality, will benefit from the geographical proximity of MEC nodes and increase value proposition by improving video caching and computational offload.


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