Energy Harvesting, Matter, and Bluetooth: Driving IoT Forward in 2023

2023-02-15 04:12:55
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Energy Harvesting, Matter, and Bluetooth: Driving IoT Forward in 2023
Illustration: © IoT For All

According to IDC, there will be 55.7 billion connected IoT devices by 2025. More companies are adopting smart devices for industrial use cases, the enterprise, the automotive sector, healthcare, and the smart home. As IoT continues to rapidly grow, what can we expect in 2023? Let’s take a look.

This year, we will see a growing demand for sustainability in consumer and industrial products. Europe is still ahead of the rest of the world in addressing this, but the U.S. and many other regions will also make major moves to catch up.

There are many ways to improve sustainability and reduce our impact on the environment. One method that will see a lot of traction is the adoption of energy harvesting to reduce or completely replace, the need for batteries in our connected devices. Every year billions of batteries are thrown away into landfills, so solving this problem will have a huge impact.

Although there are many different ways that connected devices can harvest energy, photovoltaic (PV) cell technology is likely to see the most adoption in the coming years. Connected devices, ranging from remote controls and wireless keyboards in the smart home to beacons and e-Badge readers in enterprise/industrial environments, will be powered by PV energy. In addition to the sustainability benefits of using PV technology to reduce battery waste, PV energy harvesting reduces maintenance time and costs – which are particularly important when it comes to large IoT deployments.

“Although there are many different ways that connected devices can harvest energy, photovoltaic (PV) cell technology is likely to see the most adoption in the coming years.”

-Atmosic Technologies

Another trend on the horizon for the IoT industry in 2023 is Matter, a connectivity standard promising to help smart devices better communicate with each other. While Bluetooth is still the protocol of choice for lightweight communication, there are a number of protocols that sit on top of the highly reliable IEEE802.15.4 standard. One of the newer protocols leveraging 15.4 is Matter and if enough companies start adopting it we will likely see Matter become another key wireless protocol that connects our IoT devices and networks.

The Bluetooth Special Interest Group (BT SiG) is also broadening Bluetooth’s capabilities for IoT applications in 2023 as more devices are adopting Bluetooth’s location services. Bluetooth’s Direction Finding, Angle-of-Arrival (AoA), and Angle-of-Departure (AoD) technologies promise to unleash new opportunities in retail stores, factories, warehouses, hospitals, and many other commercial and industrial environments.

Bluetooth AoA has become one of the most popular technologies for indoor positioning. Bluetooth AoA can calculate the direction and location of an object (the tag) through infrastructure devices, which are often referred to as the locator or receiver. This precise method of calculating location makes Bluetooth AoA systems more accurate than many other positioning technologies, as well as very power-efficient – something that is particularly important for deployments that have hundreds of thousands of trackable assets.

AoD is also becoming increasingly popular. In this case, the signals are transmitted from the infrastructure device and then the edge device calculates its position. This is possible because AoD applications often use smartphones to take advantage of the modern CPU resource available in the handheld device and the daily recharge provided by the smartphone owner. The just-in-time messaging allows commercial and retail facilities to further build out their customer loyalty programs with unique special offers and introduce point-of-interest wayfinding through their stores, which then also complements the industry-wide adoption of Electronic Shelf Labels (ESL) – another technology benefiting from the ultra-low power capabilities of Bluetooth.

The benefit of electronic signage is that updates can automatically be applied across one or all products and multiple stores at the press of a key. The caveat of this is that many of these devices need to be battery-operated, creating a logistical challenge when it comes time to swap out batteries for every ESL deployed, with most having been initially turned on at the same time. Implementing intelligent energy harvesting and wireless technologies in such fleets simplifies deployment, maintenance, and daily operation. Overall, energy harvesting reduces maintenance downtime and operating overhead, in addition to mitigating the ecological concerns of battery waste.

It’s exciting to see how technologies like energy harvesting and ESLs are contributing to a more sustainable IoT in 2023, helping the environment, and benefiting end-users at the same time. It is expected that the industry’s reliance on batteries will continue to decrease over the next year as sustainability continues to become a much larger priority for more product developers and their companies. New standards such as Matter and the continual investment in existing standards to meet the needs of the market (such as the addition of AoA and AoD to the Bluetooth protocol) will help drive continued innovation and bring new opportunities for the IoT market.

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  • Bluetooth
  • Energy
  • Internet of Things
  • Matter

  • Bluetooth
  • Energy
  • Internet of Things
  • Matter

参考译文
能量收集、物质和蓝牙:2023年推动物联网向前发展
插图:© IoT For All --> 根据IDC的数据,到2025年,连接的物联网设备将达557亿个。越来越多的公司正在将智能设备用于工业应用、企业、汽车领域、医疗保健和智能家居。随着物联网的快速发展,2023年我们能期待哪些变化呢?让我们来看看。今年,我们将会看到消费者和工业产品对可持续性的需求不断增加。欧洲仍然是解决该问题的领先地区,但美国和其他许多地区也将采取重大举措来追赶。有多种方法可以提高可持续性,减少我们对环境的影响。其中一种方法是采用能量采集技术,以减少甚至完全替代物联网设备对电池的需求。每年,数十亿节电池被丢弃到垃圾填埋场,因此解决这个问题将产生巨大的影响。尽管物联网设备可以从多种方式中采集能量,光伏(PV)电池技术在接下来的几年中很可能会得到最广泛的应用。从智能家居中的遥控器和无线键盘到企业/工业环境中的信标和电子徽章读卡器,所有这些联网设备都将由光伏能源供电。除了使用光伏技术减少电池浪费的可持续性优势外,光伏能量采集还能减少维护时间和成本——这对于大规模物联网部署来说尤为重要。“尽管联网设备可以从多种方式中采集能量,光伏(PV)电池技术在接下来的几年中很可能会得到最广泛的应用。”——Atmosic Technologies 另一个2023年物联网行业将出现的趋势是Matter,这是一种连接标准,有望帮助智能设备更好地彼此通信。尽管蓝牙仍然是轻量级通信的首选协议,但有许多协议基于高可靠性的IEEE 802.15.4标准构建。其中一种较新的基于15.4标准的协议是Matter。如果越来越多的公司采用它,Matter可能会成为连接我们物联网设备和网络的又一个重要无线协议。蓝牙特别兴趣小组(Bluetooth SIG)也在2023年扩展了蓝牙在物联网应用中的能力,因为越来越多的设备正在采用蓝牙的定位服务。蓝牙方向查找(Direction Finding)、到达角(AoA)和出发角(AoD)技术有望在零售商店、工厂、仓库、医院以及其他许多商业和工业环境中释放新的机会。蓝牙AoA已成为室内定位最受欢迎的技术之一。蓝牙AoA通过基础设施设备(通常称为定位器或接收器)计算物体(标签)的方向和位置。这种精确的位置计算方法使蓝牙AoA系统比许多其他定位技术更为准确,并且还非常节能——这一点对于部署数以十万计的可追踪资产尤为重要。AoD也变得越来越受欢迎。在这种情况下,信号从基础设施设备发射,然后边缘设备计算自己的位置。这之所以成为可能,是因为AoD应用通常利用智能手机,利用手机中的现代CPU资源和手机用户每天充电的便利。即时消息传输技术允许商业和零售设施进一步完善其客户忠诚度计划,提供独特的特别优惠,并通过商店内部的“兴趣点”导航功能引导顾客——这也补充了整个行业对电子货架标签(ESL)的广泛采用——这又是一种得益于蓝牙超低功耗能力的技术。电子标识的优势在于,只需按一下按钮,就可以在一种或所有产品、多个门店中自动更新信息。但需要注意的是,这些设备中的许多都是由电池供电的,当需要为每个ESL更换电池时,尤其是许多设备同时开启的情况下,会带来物流挑战。在这样的设备群中实施智能能量采集和无线技术可以简化部署、维护和日常操作。总体而言,能量采集不仅减少了维护停机时间和运营开销,还能缓解电池废弃物带来的生态问题。看到像能量采集和电子货架标签这样的技术如何在2023年为更可持续的物联网做出贡献,有助于环境的保护,同时也惠及终端用户,这是一件令人振奋的事情。预计随着可持续性在更多产品开发者及其公司中的优先级别不断提升,行业对电池的依赖将在未来一年持续下降。诸如Matter等新标准,以及持续投资现有标准以满足市场需求(例如将AoA和AoD添加到蓝牙协议中)将有助于推动持续创新,并为物联网市场带来新的机遇。 推文分享 邮件分享 蓝牙 能源 物联网 Matter --> 蓝牙 能源 物联网 Matter
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