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IoT – Putting the Buzz in Your Drink

2023-06-17 22:58:13
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Illustration: © IoT For All

Fizzy water and carbonated drinks are very popular beverages that make up a significant portion of the global beverage industry. To remain competitive and profitable in this highly competitive market, with numerous bottlers and distributors vying for market share, these companies need to focus on supply chain optimization, sustainability, and energy management.

For starters, bottlers and distributors need to ensure that they have enough inventory to meet customer demand while also remaining energy efficient by minimizing waste, spoilage, and redundant delivery trips. This requires smart transportation methods, which have now become much easier and cost-effective with advanced technologies such as The Internet of Things (IoT) and machine-to-machine (M2M) connectivity.

How Carbonated Drinks are Made

When CO2 is added to a drink, it creates carbonation, which gives the drink its characteristic fizz or bubbles. The bottler can do this during the manufacturing process or by the establishment that serves the drink, such as a restaurant or bar. In cases where the CO2 is added on site, the establishment typically stocks two separate containers: one for the CO2 gas and one for the liquid drink or water. These containers are connected to a dispenser or tap, which mixes pre-defined and exact measures of the CO2 and the liquid to produce the desired drink. This process ensures that the drink has a consistent level of carbonation and taste and allows establishments to offer a wide variety of carbonated drinks to their customers.

Challenges of the Industry

Traditionally beverage companies often relied on manual processes to locate CO2 containers within establishments and monitor their stock levels. This involves sending delivery drivers on regular routes, where they physically check the location of the CO2 containers and assess their stock levels. Based on their findings, they replenish the containers as needed. But this approach is time-consuming, heavy on carbon footprint, inefficient, and costly, as it requires a significant amount of manpower and resources to maintain. It also leaves room for errors and inconsistencies, as the manual process can be prone to mistakes, such as misplacing containers or failing to accurately measure CO2 levels.

Optimization Management through IoT and Smart Sensors 

To address these challenges, future-looking companies are turning to IoT technology to optimize their CO2 delivery operations. By installing IoT sensors on CO2 containers and using wireless connectivity such as LoRaWAN and Narrowband IoT (NB-IoT) networks to transmit data to a central IoT portal, companies can remotely monitor the location and stock levels of their CO2 containers in real time. This allows them to optimize delivery routes and reduce waste. The data analytics provided also help improve operational efficiency and ensure that customers always have a consistent supply of carbonated drinks.

“To address these challenges, future-looking companies are turning to IoT technology to optimize their CO2 delivery operations.”

The combination of IoT-enabled sensors and green technology offers numerous benefits, including remote tracking and monitoring of container location and CO2 levels, real-time data analysis, and more efficient and proactive operations for distribution companies. Additionally, the low-power and highly secure nature of its LoRaWAN and Narrowband IoT (NB-IoT) networks makes it an ideal solution for this application. By implementing this IoT solution through M2M connectivity, distribution companies can save time and money, become more sustainable, and better serve their customers.

By optimizing distribution operations and reducing unnecessary trips, this IoT solution can also help distribution companies reduce their carbon footprint. With increasing global awareness of the need for sustainability, IoT solutions like this are becoming more important to help businesses reduce their impact on the environment.

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  • Manufacturing
  • Food
  • Food and Beverage
  • Sensors
  • Sustainability

  • Manufacturing
  • Food
  • Food and Beverage
  • Sensors
  • Sustainability

参考译文
物联网——为你的饮品增添趣味# 示例输入和输出**输入**人工智能(AI)是计算机科学的一个分支,旨在开发表现出人类智能的软件或机器。这包括从经验中学习、理解自然语言、解决问题以及识别模式。**输出**人工智能(AI)是计算机科学的一个分支,旨在开发表现出人类智能的软件或机器。这包括从经验中学习、理解自然语言、解决问题以及识别模式。
插图:© IoT For All → 苏打水和碳酸饮料是非常受欢迎的饮品,占据了全球饮料产业的重要份额。在这个竞争激烈的市场中,众多灌装商和分销商都在争夺市场份额,为了保持竞争力和盈利能力,这些公司需要专注于供应链优化、可持续发展和能源管理。首先,灌装商和分销商需要确保拥有足够的库存以满足客户需求,同时通过减少浪费、变质和重复配送来提高能源效率。这需要智能的运输方式,如今借助物联网(IoT)和机器对机器(M2M)连接等先进技术,这种智能运输方式变得更加容易和经济。碳酸饮料的制作过程:当二氧化碳(CO2)被添加到饮料中时,就会产生碳酸化效果,赋予饮料特有的气泡和口感。灌装商可以在生产过程中完成这一操作,也可以在提供饮料的场所,如餐馆或酒吧中进行。如果是在现场添加CO2,该场所通常会配备两个独立的容器:一个用于储存CO2气体,另一个用于储存液体饮料或水。这两个容器连接到一个分配器或龙头,该设备会按照预设和精确的配比将CO2与液体混合,从而制作出所需的饮料。这一过程确保了饮料的碳酸化程度和口味的一致性,也让场所能够为顾客提供多种多样的碳酸饮料。行业的挑战:传统上,饮料公司通常依赖人工流程来在场所中定位CO2容器并监控库存水平。这包括安排配送人员定期巡查,他们实地检查CO2容器的位置并评估库存水平,然后根据检查结果进行补货。但这种方式既耗时又碳排放高,效率低且成本高,因为它需要大量的人力和资源来维持。此外,该方法容易出错、不一致,因为人工操作可能出现错误,比如误放容器或未能准确测量CO2的水平。通过物联网和智能传感器的优化管理:为了解决这些挑战,有远见的公司正在转向物联网(IoT)技术,以优化他们的CO2配送运营。通过在CO2容器上安装IoT传感器,并利用LoRaWAN和窄带物联网(NB-IoT)等无线连接技术将数据传输到中央IoT平台,公司可以实时远程监控其CO2容器的位置和库存水平。这使他们能够优化配送路线并减少浪费。数据分析功能还能提高运营效率,并确保客户始终获得一致的碳酸饮料供应。“为了解决这些挑战,有远见的公司正在转向物联网(IoT)技术以优化他们的CO2配送运营。”物联网传感器与绿色技术的结合带来了诸多好处,包括远程追踪和监控容器位置与CO2水平、实时数据分析,以及为分销公司提供更高效和主动的运营。此外,LoRaWAN和NB-IoT网络具有低功耗和高度安全的特性,因此非常适合这一应用。通过M2M连接实施这一物联网解决方案,分销公司可以节省时间与成本,变得更加可持续,并更好地服务客户。通过优化配送运营并减少不必要的行程,该物联网解决方案也有助于分销公司减少碳足迹。随着全球对可持续发展需求的日益提高,像这样的物联网解决方案变得越来越重要,以帮助企业在减少对环境影响的同时实现商业目标。TweetShareShareEmail 制造业食品食品与饮料传感器可持续发展 → 制造业食品食品与饮料传感器可持续发展
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