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What Is LTE, and How Is It Used in IoT?

2022-11-06
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The average person looking at the upper corner of their phone might ask themselves, “what is 4G LTE?” or “what is LTE data?”

LTE stands for “Long-Term Evolution.” It’s often conflated with 4G LTE, the fourth generation of global wireless communication and data transmission.

LTE is one of the fastest-developing mobile technologies and connects one in four mobile users globally. Although it is not the same as 4G, the two technologies are vital to Internet of Things (IoT) enablement.

The Evolution of Cellular LTE Technology

The first generation (1G) of mobile technology emerged in the 1980s with analog voice. Eventually, it was supplanted by 2G and 3G networks.

Today, mobile network operators (MNOs) have fully established their global LTE rollouts of 4G networks. They have used these networks to transition from 2G and 3G generations to LTE.

The Rise of LTE

Since its commercial launch in 2010, LTE has been pivotal to 4G adoption. However, this paradigm was not always the case.

4G began with LTE and Worldwide Interoperability for Microwave Access (WiMAX). These competing systems were on the Orthogonal Frequency Division on Multiple Access (OFDMA) modulation scheme. In the end, LTE dominated the broadband market and spread across verticals.

Decoding the Semantics

For clarification, experts often say “4G LTE” to delineate between 3G’s and 4G’s capabilities. LTE represents a gradual shift toward the 4G standard. 

5G and LTE

Despite the hype behind 5G, it will not replace 4G soon. 4G LTE networks will continue to serve as a leading mainstream mobile technology, as 5G networks will depend on it.

How Does LTE Support IoT?

IoT constitutes a network of real-world objects that use sensors to collect and exchange data with other devices via the internet. IoT devices can be small, like virtual home assistants, or massive, like factory machinery.

There are over 13 billion IoT devices today. Sustaining large-scale, high-speed connection deployments requires considerable bandwidth. LTE provides a reliable connection for IoT devices to complete data transfers to the cloud and other devices.

One of the important things this technology also provides is the ability for cellular LPWA networks (e.g., Cat M and NB-IoT) to run on its infrastructure. (Enabling this ability requires some dedicated development on the LTE network.) In many use cases, Cat M and NB-IoT are the most suitable technologies for IoT applications.

Use Cases and Benefits

LTE IoT enables electric vehicle charging stations.

LTE IoT devices have a well-established presence in many machines and equipment, such as:

  • Electric vehicle charging stations
  • Health monitoring gadgets
  • Home and commercial security

Cost reduction drives these devices, as this technology is more spectrally efficient and flexible than its predecessors. Also, IoT data is transported faster over 4G LTE networks at a lower cost per bit.

Moreover, LTE IoT devices are future-proof and fully compatible with the fast-arriving 5G paradigm shift.

Solutions for Global IoT Deployments

Our LTE solution portfolio connects deployments that leverage local, multiregion and global plans enhanced with one of the market’s leading connectivity management platforms. We can deliver multi-IMSI capabilities and IoT connectivity plans based on embedded SIM (eSIM) technology in a competent and trouble-free manner.

LTE plans can be tailored for homogeneous or mixed deployments in dimensions, such as:

  • Low data rates with LTE-M and NB-IoT
  • Ultralow power support from PSM and eDRX
  • Mobile broadband

Our IoT connectivity plans and SIM cards overcome the challenges of small or large industrial deployments. Speak with an IoT expert to request your IoT connectivity starter kit.

Request a Starter Kit

参考译文
LTE是什么,如何在物联网中使用?
一般人看着手机的上角可能会问自己:“什么是4G LTE?”或者“LTE数据是什么?”LTE的意思是“长期进化”。人们常常把它与第四代全球无线通信和数据传输技术4G LTE联系在一起。LTE是发展最快的移动技术之一,连接着全球四分之一的移动用户。虽然它与4G不同,但这两项技术对物联网(IoT)的实现至关重要。第一代(1G)移动技术出现在20世纪80年代,具有模拟语音。最终,它被2G和3G网络所取代。如今,移动网络运营商(MNOs)已经完全建立了他们的全球LTE 4G网络。他们利用这些网络从2G和3G过渡到LTE。自2010年商业推出以来,LTE一直是4G采用的关键。然而,这种范式并不总是如此。4G始于LTE和全球微波接入互操作性(WiMAX)。这些竞争系统都采用正交分频多址(OFDMA)调制方案。最终,LTE主导了宽带市场,并蔓延到各个垂直行业。为了澄清,专家们经常用“4G LTE”来区分3G和4G的能力。LTE代表着向4G标准的逐渐转变。尽管5G被大肆宣传,但它不会很快取代4G。4G LTE网络将继续作为领先的主流移动技术,因为5G网络将依赖于它。物联网构成了一个现实世界物体的网络,利用传感器通过互联网与其他设备收集和交换数据。物联网设备可以小如虚拟家庭助手,也可以大如工厂机器。如今有130多亿物联网设备。维持大规模的高速连接部署需要相当大的带宽。LTE为物联网设备提供可靠的连接,完成数据向云端和其他设备的传输。该技术还提供的重要内容之一是蜂窝LPWA网络(如Cat M和NB-IoT)在其基础设施上运行的能力。(启用该功能需要在LTE网络上进行一些专门的开发。)在许多用例中,Cat M和NB-IoT是最适合物联网应用的技术。LTE物联网设备在许多机器和设备中都有良好的存在,例如:成本降低驱动这些设备,因为该技术比其前身更高效和灵活。此外,物联网数据通过4G LTE网络传输速度更快,每比特成本更低。此外,LTE物联网设备是不受未来影响的,完全兼容快速到来的5G范式转变。我们的LTE解决方案组合将利用本地、多地区和全球计划的部署与市场领先的连接管理平台之一进行了连接。我们可以提供多imsi能力和基于嵌入式SIM (eSIM)技术的物联网连接计划,以合格和无故障的方式。我们的物联网连接计划和SIM卡克服了小型或大型工业部署的挑战。与物联网专家交谈,请求您的物联网连接入门套件。
  • 物联网技术
  • en
  • lte
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