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NB-IoT Explained: What Is It, and How Does It Work?

2022-11-28
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Internet of Things (IoT) solutions expand and improve daily business operations worldwide. Innovations in cellular narrowband IoT (NB-IoT) network technology broaden potential IoT applications by:

  • Reducing device energy consumption through smarter battery use
  • Extending IoT application reach
  • Increasing return on investment (ROI)
  • Reducing costs

The impact of NB-IoT is revolutionary for power efficiency and smart management. Let’s explore NB-IoT radio technology, how it works and what applications it will enable.

What Is Narrowband IoT?

NB-IoT logo.

NB-IoT is a cellular low-power wide-area network (LPWAN) technology standard. It’s deployed over resource blocks (i.e., a unit of network resources) on existing cellular LTE networks or dedicated ones. NB-IoT can be the best solution for connecting people and businesses to devices that transact small data amounts. These devices expend low amounts of energy since they can spend time in sleep mode.

Its efficiencies in indoor coverage, energy expenditure and maintenance contribute to an increase in IoT-enabled devices. Experts estimate that there will be over 29 billion IoT devices by 2030.

How Does NB-IoT Work?

NB-IoT was initially specified in 3GPP’s Release (Rel) 13. 3GPP introduced it strictly as a connectivity solution for non-moving devices. NB-IoT devices are designed to operate on a very narrow 180 kHz spectrum to lower hardware costs.

NB-IoT can be deployed on the network in three different modes:

  • Stand-alone: Utilizes stand-alone carrier in dedicated spectrum
  • In-band: Utilizes resource blocks within a normal LTE carrier
  • Guard band: Utilizes the unused resource blocks within an LTE carrier’s guard band 

3GPP Rel 14 gave NB-IoT enhanced mobility, albeit not to the extent that other cellular technologies are mobile. Rel 14 also improved data rate performance:

  • Rel 13 (NB1): Up to 21 kbps downlink, 62.5 kbps uplink
  • Rel 14 (NB2): Up to 120 kbps downlink, 160 kbps uplink

What Are the Benefits of NB-IoT, and Why Is It Used?

NB-IoT offers expanded coverage and extended battery life. It's excellent for smart city use cases, such as smart streetlights and parking meters.

Expanded Coverage Range

As new wireless technologies emerge, where does NB-IoT fit? Short-range radio solutions like Bluetooth® are useful but have too high a bandwidth. They also don’t reach far enough for applications requiring a wide geographic span. LTE-M technology has more expansive coverage capabilities but is more costly.

NB-IoT is a low-bitrate technology that is integral to 4G and 5G technology. It suits applications that need wide-area coverage. NB-IoT’s radio and data protocols enable coverage to reach deep indoors and underground areas.

Extended Battery Life

With less power consumption comes greater device possibilities. The simpler a radio waveform, the less power it will consume. The simplicity of NB-IoT’s waveform technology and smart power-saving modes combine to consume less power.

NB-IoT modems deliver battery life lasting more than 10 years when all power-saving guidance is followed. As a result, businesses will replace batteries less frequently, reducing maintenance and operational costs.

Reliable Technology at a Lower Cost

Connect more devices for less and with greater placement flexibility. The technology uses licensed spectrum, which international standards regulate.

NB-IoT networks are available in most countries worldwide. The NB-IoT module costs less and is simpler to integrate into the sensor or device. The cellular infrastructure supporting it can connect many devices and save security and maintenance costs.

7 Ways NB-IoT Will Impact Businesses

NB-IoT will revolutionize cities and businesses that rely on access to data in hard-to-reach locations, including:  

  • Warehouses
  • Underground garages
  • Utility closets
  • Rural environments

When you obtain connectivity from an expert IoT provider, you can manage the deployment with more accessible control.

Furthermore, its cost-efficiency makes it feasible for existing IoT applications that haven’t gained widespread acceptance because of previously prohibitive costs.

These applications include:

  • Smart metering for utilities, such as gas and water
  • Connected city streetlights and parking meters
  • Smart building capabilities like access and temperature control
  • Livestock and pet tracking
  • Smart waste management systems
  • Wearable health and fitness technology
  • Asset tracking

From farming to health care to industrial utilities, expect NB-IoT to become integral to the 5G application framework. NB-IoT and LTE-M are expected to coexist in 5G networks for many years. They will be the only technologies to support cellular LPWA use cases.

NB-IoT vs. LTE-M: What’s the Difference?

LTE-M is a full-fledged cellular standard. It supports full mobility and even elementary voice (i.e., Voice over LTE), neither of which are available in NB-IoT. LTE-M is a low-power standard. However, it consumes more power because it delivers higher data rates (up to 1 Mbps for Cat M1) and implements a fuller cellular protocol.

Still, LTE-M can be put in Power Saving Mode (PSM) and extended Discontinuous Reception (eDRX) and deliver multiyear solutions for battery-powered IoT devices. Depending on the coverage scenario, NB-IoT applications must tolerate latency that can reach seconds, and LTE-M has a lower latency in the tens of milliseconds.

Finding the Right NB-IoT Solution

Are you looking to design an IoT solution that incorporates NB-IoT technology? We have helped hundreds of businesses with NB-IoT modules and solutions as they prepare for changes in wireless connectivity.

Contact us for expert device design support and request a developer kit.

Request a Developer Kit


Editor’s Note: This blog was originally published on 14 February 2018 and has since been updated.

参考译文
NB-IoT解释:它是什么,如何工作?
物联网(IoT)解决方案扩展和改善了全球范围内的日常业务运营。蜂窝窄带物联网(NB-IoT)网络技术的创新通过以下方式拓宽了潜在的物联网应用:NB-IoT对电力效率和智能管理的影响是革命性的。让我们来探索NB-IoT无线电技术,它是如何工作的以及它将实现哪些应用。NB-IoT是一种蜂窝低功率广域网络(LPWAN)技术标准。它部署在现有蜂窝LTE网络或专用网络上的资源块(即网络资源单位)上。NB-IoT可以成为将个人和企业与处理小数据量的设备连接起来的最佳解决方案。这些设备消耗的能量很低,因为它们可以在睡眠模式下工作。它在室内覆盖、能源消耗和维护方面的效率有助于物联网设备的增加。专家估计,到2030年,物联网设备将超过290亿件。NB-IoT最初是在3GPP的Release (Rel) 13中指定的。3GPP严格将其作为非移动设备的连接解决方案引入。NB-IoT设备被设计为在非常狭窄的180 kHz频谱上工作,以降低硬件成本。NB-IoT可以以三种不同的模式部署在网络上:3GPP Rel 14增强了NB-IoT的移动性,尽管没有达到其他蜂窝技术的移动性的程度。Rel 14还提高了数据速率性能:随着新的无线技术的出现,NB-IoT适合哪里?像蓝牙®这样的短程无线电解决方案是有用的,但带宽过高。对于需要广泛地域跨度的应用程序,它们的应用范围也不够大。LTE-M技术覆盖范围更广,但成本更高。NB-IoT是4G和5G技术不可或缺的低比特率技术。它适用于需要广域覆盖的应用程序。NB-IoT的无线电和数据协议能够覆盖到室内和地下深处。更低的功耗带来了更大的设备可能性。无线电波形越简单,消耗的能量就越少。NB-IoT波形技术的简单性和智能节电模式相结合,消耗更少的电力。在遵循所有节电指导的情况下,NB-IoT调制解调器的电池寿命超过10年。因此,企业更换电池的频率将降低,从而降低维护和运营成本。以更少的费用连接更多的设备,并具有更大的放置灵活性。这项技术使用的是国际标准规定的授权频谱。NB-IoT网络在全球大多数国家均可使用。NB-IoT模块成本更低,更容易集成到传感器或设备中。支持它的蜂窝基础设施可以连接许多设备,并节省安全和维护成本。NB-IoT将彻底改变那些依赖于在难以到达的地点访问数据的城市和企业,包括:当您从专业的IoT提供商获得连接时,您可以使用更容易访问的控制来管理部署。此外,它的成本效率使其适用于现有的物联网应用程序,这些应用程序由于以前高昂的成本而没有得到广泛接受。从农业到医疗保健再到工业公用事业,预计nb -物联网将成为5G应用框架的一部分。预计NB-IoT和LTE-M将在5G网络中共存多年。它们将是支持蜂窝LPWA用例的惟一技术。LTE-M是一个成熟的细胞标准。它支持全移动性,甚至支持基本语音(即LTE语音),这两者在NB-IoT中都不存在。LTE-M是一种低功耗标准。然而,它消耗更多的能量,因为它提供了更高的数据速率(Cat M1高达1mbps),并实现了更完整的蜂窝协议。 尽管如此,LTE-M可以被置于省电模式(PSM)和扩展不连续接收(eDRX),并为电池供电的物联网设备提供多年解决方案。根据覆盖场景的不同,NB-IoT应用必须容忍可达秒的延迟,而LTE-M的延迟较低,只有几十毫秒。您是否希望设计一个包含NB-IoT技术的物联网解决方案?我们为数百家企业提供了NB-IoT模块和解决方案,帮助他们应对无线连接的变化。联系我们为专家设备设计支持和请求开发人员工具包。编者注:本博客最初发布于2018年2月14日,并已更新。
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