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LPWAN and IoT Technologies Make Agriculture Smarter

2022-11-17
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LPWAN and IoT Technologies Make Agriculture Smarter
Illustration: © IoT For All

Today’s agricultural professionals must strongly consider how certain technologies could help them stay competitive. Low-power wide-area networks (LPWAN) and the Internet of Things (IoT) are two technologies often used together to help farmers meet their goals. LPWAN and IoT technologies allow them to venture into smart farming. IoT in agriculture is already increasingly common, and here’s why using it along with LPWAN can enable farmers to get even better results.

'Smart farming cannot solve all issues affecting farmers, but it can ease many of their burdens and help them remain successful.' -Emily NewtonClick To Tweet

LPWAN and IoT: The Benefits

#1: Weather Monitoring

Farmers who gain experience and tips from others in the industry can often predict critical weather events, such as rainstorms. However, now that IoT in agriculture is ramping up, they can also benefit from more high-tech methods. 

Consider how, just before the COVID-19 pandemic necessitated remote work, researchers traveled to Kenya’s Makueni County to distribute a dozen rain gauges powered by LPWAN and IoT technology. Africa has experienced an 85 percent decrease in the number of functional ground observation weather stations over the past 50 years. That’s a big problem, especially given how much the country depends on crops that thrive with sufficient rainfall. 

The gauges only cost about $50 to manufacture. They’re recyclable and inexpensive, and they use LPWAN technology. These are basic tools, but people believe they’ll become instrumental in reducing agriculture-related risks. The people involved in this smart farming project specifically wanted to make daily rainfall totals the sole measurement collected. More advanced options exist, but the researchers deemed rain amounts to be the most important agro-meteorological variable for people farming in the tropics. 

Farmers have also benefited from similar LPWAN advancements in the Creston Valley area of British Columbia. Five weather stations were installed on private properties to measure specifics ranging from leaf wetness to solar radiation. People involved in this initiative say it should provide more-informed responses to pest problems plus allow them to prepare for climate change-based natural disasters.

#2: Power Reliability

Power outages are an annoyance for many households, stopping them from watching Netflix or having dinner at the planned time. However, a disruption in electricity can be far more disruptive when a family’s livelihood centers on agriculture, which is why many farmers have backup generators as reassurance against such events, similar to how they invest in insurance premiums. That wise move can complement attempts to use LPWAN and IoT tech to safeguard against these outages. 

Some utility companies find it difficult to justify the expenses of extending the electrical grid to remotely located farms. However, many agricultural professionals increase their bargaining power by joining farming cooperatives. Coop representatives often construct and operate the power lines stretching across members’ farms. 

The long-range wide-area network, more commonly known as LoRaWAN, is under the umbrella of LPWAN technologies. It works particularly well on farms because it can transmit data across substantial distances without using much battery power. One creative way to combine IoT with LoRaWAN is letting sensor data inform power infrastructure managers about outages as soon as they happen. Line repair technicians who know about problems faster can quickly make repairs. Using the IoT in agriculture like this is not a replacement for options like generators. However, such technology can give farmers better coverage and peace of mind against electricity-related risks. 

#3: Data Collection

The more reliable data agricultural professionals have at their disposal, the easier it is for them to make confident decisions that keep their operations running smoothly. Farmers can engage in more sustainable practices by reducing their use of fertilizers and cutting resource usage. Data-collecting sensors help them establish baselines and investigate the most effective ways to make meaningful progress. 

Many people immediately think of farms spread across sprawling fields, with crops arranged in neat rows stretching as far as the eye can see. However, those are not the only options. Urban farming in the middle of cities is becoming more popular. People often get creative to make these endeavors work, including going vertical. Even the roof of a parking lot in Singapore was repurposed for agriculture. 

Research indicates LPWAN and IoT options work well for monitoring weather and soil conditions on urban farms. Their use cases don’t end there — these solutions could gather valuable data for people who want to grow crops in cities. In another case, a collaboration between two companies involved deploying IoT and a long-range (LoRa) network to learn more about the causes of crop stress on an avocado farm in New South Wales, Australia. This data-collection effort included sensors to measure sap flow, vapor-pressure deficits, and more. People used the results to find a link between moisture content and fruit drop. 

It’s not always easy, or even possible, for farmers to find connections between good or bad events and environmental or crop-care incidents. However, smart farming advancements can help them identify those all-important ties more often. They can then use that newly acquired information to make more progress and avoid pitfalls.

#4: Useful Livestock-Related Insights

Livestock-related illnesses can quickly spread throughout entire herds, significantly affecting farmers’ ability to profit as expected. However, by the time the animals seem outwardly sick, it’s often too late to quarantine them. Using the IoT in agriculture could change that. 

Many solutions on the market are very low-profile and easy to use, such as ear tags for cows. They track changes in health and behavior, informing farmers sooner that something may be wrong with the animals. Such solutions also show real-time locations. That feature is particularly convenient if livestock is lost or a farmer suspects theft. 

In one study, researchers tested an IoT-LoRa solution on pastured sheep. The technology showed the precise places the sheep spent their time and tracked behavior changes over 24-hour periods. The people involved in the research concluded that their work could alert farmers to life-threatening situations or instances where sheep have begun escaping the field. They also cited other studies where people used smart sensors to track lameness or estrus in sheep.

A Game-Changing Combination

Thanks to developments like these, it’s easy for people to recognize the potential for using LPWAN and the IoT in agriculture. Many agricultural professionals have tremendous amounts of money invested in their farming efforts. If those attempts fail too often, the results could be devastating. Smart farming cannot solve all issues affecting farmers, but it can ease many of their burdens and help them remain successful.

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  • Agriculture
  • Animal Tracking
  • Automation
  • Internet of Things
  • LoRaWAN

  • Agriculture
  • Animal Tracking
  • Automation
  • Internet of Things
  • LoRaWAN

参考译文
LPWAN和物联网技术使农业更智能
今天的农业专业人员必须认真考虑某些技术如何能帮助他们保持竞争力。低功耗广域网络(LPWAN)和物联网(IoT)是两种经常用于帮助农民实现其目标的技术。LPWAN和物联网技术使他们能够冒险进入智能农业。物联网在农业中已经越来越普遍,以下是为什么将其与LPWAN结合使用可以使农民获得更好的结果。从业内其他人那里获得经验和技巧的农民通常可以预测重大天气事件,比如暴雨。然而,随着农业物联网的发展,他们也可以从更高科技的方法中受益。在COVID-19大流行需要远程工作之前,研究人员前往肯尼亚的马库埃尼县分发了12个由LPWAN和物联网技术驱动的雨量计。在过去50年里,非洲的有效地面观测气象站数量减少了85%。这是一个大问题,尤其是考虑到这个国家在很大程度上依赖于在充足降雨条件下生长的作物。这种仪表的制造成本仅为50美元左右。它们是可回收的,便宜的,而且它们使用LPWAN技术。这些都是基本的工具,但人们相信它们将成为减少农业相关风险的工具。参与这个智能农业项目的人特别希望将日降雨量作为收集到的唯一测量数据。虽然有更先进的选择,但研究人员认为,降雨量是热带地区农民最重要的农业气象变量。不列颠哥伦比亚省克雷斯顿山谷地区的农民也从类似的LPWAN进展中受益。五个气象站安装在私人物业,以测量从树叶湿度到太阳辐射等具体数据。参与这项计划的人说,它应该为害虫问题提供更知情的回应,并让他们为气候变化导致的自然灾害做好准备。对于许多家庭来说,停电是一件让人烦恼的事,会让他们无法在计划的时间看Netflix或吃晚餐。然而,当一个家庭的生计集中在农业上时,电力中断可能造成的破坏要大得多,这就是为什么许多农民有备用发电机作为应对此类事件的保障,就像他们投资于保险费一样。这一明智的举措可以补充尝试使用LPWAN和物联网技术来防止这些中断。一些公用事业公司发现很难证明将电网扩展到偏远农场的费用是合理的。然而,许多农业专业人员通过加入农业合作社来提高他们的议价能力。合作社的代表经常建造和操作跨越成员农场的输电线。远程广域网络,通常被称为LoRaWAN,属于LPWAN技术的范畴。它在农场的工作效果特别好,因为它可以在不消耗大量电池电量的情况下跨越相当长的距离传输数据。将物联网与LoRaWAN结合起来的一个创造性方法是让传感器数据在停电发生时立即通知电力基础设施管理人员。线路维修技术人员谁知道问题更快,可以迅速进行维修。像这样在农业中使用物联网并不能取代发电机等选择。然而,这种技术可以为农民提供更好的覆盖范围,并让他们安心地应对与电力相关的风险。农业专业人员掌握的可靠数据越多,他们就越容易做出自信的决策,从而保持业务的平稳运行。农民可以通过减少化肥的使用和减少资源的使用来采取更可持续的做法。数据收集传感器帮助他们建立基线,并研究最有效的方法,以取得有意义的进展。 许多人马上想到的是遍布广阔田野的农场,庄稼整齐地排列成行,一望无际。然而,这些并不是唯一的选择。城市中心的城市农业正变得越来越受欢迎。为了使这些努力成功,人们通常会发挥创造力,包括垂直发展。就连新加坡一个停车场的屋顶也被改造成农业用地。研究表明,LPWAN和物联网选项可以很好地监测城市农场的天气和土壤状况。它们的用例还不止于此——这些解决方案可以为想在城市中种植作物的人们收集有价值的数据。在另一个案例中,两家公司之间的合作涉及部署物联网和远程(LoRa)网络,以更多地了解澳大利亚新南威尔士州一个牛油果农场作物压力的原因。这种数据收集工作包括测量液流、蒸汽压力不足等的传感器。人们利用研究结果找到了水分含量和落果之间的联系。对于农民来说,找到好或坏事件与环境或作物护理事件之间的联系并不总是容易的,甚至是不可能的。然而,智能农业的进步可以帮助他们更经常地识别这些非常重要的联系。然后,他们可以利用新获得的信息取得更多进展,避免陷阱。与牲畜有关的疾病可以迅速在整个畜群中传播,严重影响农民的盈利能力。然而,当动物表面上看起来生病时,隔离它们往往已经太晚了。在农业中使用物联网可能会改变这一点。市场上的许多解决方案都是非常低调和易于使用的,如奶牛的耳标签。他们跟踪动物健康和行为的变化,尽早通知农民动物可能有问题。这样的解决方案还可以显示实时位置。如果牲畜丢失或农民怀疑有人偷窃,这项功能就特别方便。在一项研究中,研究人员在放牧的绵羊身上测试了IoT-LoRa溶液。这项技术显示了绵羊在24小时内活动的精确地点,并跟踪它们的行为变化。参与这项研究的人得出的结论是,他们的工作可以提醒农民注意有生命危险的情况或绵羊开始逃离田地的情况。他们还引用了其他研究,在这些研究中,人们使用智能传感器来跟踪绵羊的跛行或发情。由于这些发展,人们很容易认识到在农业中使用LPWAN和物联网的潜力。许多农业专业人士在他们的农业工作中投入了大量的资金。如果这些尝试经常失败,结果可能是毁灭性的。智能农业不能解决影响农民的所有问题,但它可以减轻他们的许多负担,帮助他们保持成功。
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