小程序
传感搜
传感圈

Satellite IoT Can Help Prepare for Natural Disasters

2022-12-14
关注

How IoT Can Help Prepare for the Worst
Illustration: © IoT For All

Communities around the world are beginning to feel the drastic effects of climate change. Global warming and climate change have caused natural disasters and extreme weather events to become the new normal. Hurricane Ian, which made landfall last month in Florida and Cuba, was one of the region’s most destructive storms in decades. Hurricane Maria, which demolished Puerto Rico’s infrastructure and power grid in 2018, is the deadliest named Atlantic hurricane of the 21st century to date. The intensity of these disasters is increasing. In fact, The World Meteorological Association announced that the number of climate change-related natural disasters quintupled over the last 50 years and that this troubling trend is expected to continue.

'With global climate challenges on the rise, leaders should look to satellite IoT solutions to help reduce the loss of life and damage to property and the planet itself.' -GlobalstarClick To Tweet

It’s not a matter of if a natural disaster will occur, but when. With global climate challenges on the rise, leaders should look to satellite IoT solutions to help reduce the loss of life and damage to property and the planet itself.

Satellite-enabled IoT and Data-driven Response Plans

IoT technologies allow government leaders to monitor energy resources remotely and create detailed disaster and recovery plans based on the data collected and transmitted from IoT sensors. Since satellite IoT remains connected even when traditional networks fall short, it can provide advanced visibility into assets and operations.

Knowing where people, vehicles, and equipment are is critical during each phase of the disaster response plan. Satellite IoT allows disaster management crews to understand the resources they have available and coordinate their actions accordingly.

Asset trackers attached to vehicles and equipment can provide accurate GPS coordinates as often as every couple of minutes or as little as once per day, depending on the scale of the disaster. A custom degree of insight allows each relief effort to be run quickly and efficiently.

Government leaders who develop a flexible, comprehensive plan in preparation for natural disasters can minimize loss of life and structural damage. Utilizing IoT satellite technology within the plan enables leaders to regain some control over a seemingly uncontrollable situation.

As Natural Disasters Continue to Increase, Reliable Connectivity Becomes more Critical

Our world runs on technology, and technology depends on reliable access to an energy source. The growing severity of wildfires, floods, earthquakes, ice storms, and extreme weather events in recent years has been a primary contributor to the increase in the frequency and duration of power outages in the U.S. City systems are rendered useless in a matter of moments. Outages can last anywhere from a day to months, and cellular coverage can quickly become scarce. When the affected community’s critical infrastructure systems are at risk, the consequences of a natural disaster can compound.

Leaders can keep in contact with vulnerable communities such as hospitals, nursing homes, and mental health facilities by using satellite IoT-based messaging systems. Satellite systems are not jeopardized by severe weather or natural disasters and can ensure continuous connectivity to send small bursts of data, like status updates or an asset’s location, when cellular coverage is lacking.

In the days before an extreme weather event, monitoring energy resources by tapping into IoT satellite networks can identify energy-conserving opportunities to eliminate inefficiencies. It can also detect anomalies and abnormal patterns that can indicate potential failures, which helps with risk mitigation.

After the disaster, IoT satellite technologies can provide disaster workers with up-to-date location information even when the power is out. Utility providers can use remote sensing devices to gain insight into where to rapidly dispatch repair crews. They can also anticipate where to pre-stage repair crews as severe weather approaches.

Outages, particularly those related to weather, are almost always accompanied by intersecting and related phenomena that result in economic, social, and health damages. Satellite IoT technology is revolutionizing the capabilities of disaster preparedness and recovery. As we continue to feel the effects of climate change, cities must prioritize preparation. The long-term benefits of investing in and adopting emerging IoT technologies are priceless.

Tweet

Share

Share

Email

  • Connectivity
  • Satellite
  • Data Analytics
  • Emergency Response
  • GPS

  • Connectivity
  • Satellite
  • Data Analytics
  • Emergency Response
  • GPS

参考译文
卫星物联网可以帮助应对自然灾害
世界各地的社区开始感受到气候变化的剧烈影响。全球变暖和气候变化导致自然灾害和极端天气事件成为新常态。上个月在佛罗里达和古巴登陆的飓风伊恩(Ian)是该地区几十年来最具破坏性的风暴之一。飓风玛丽亚在2018年摧毁了波多黎各的基础设施和电网,是21世纪迄今为止最致命的大西洋飓风。这些灾害的强度正在增加。事实上,世界气象协会宣布,与气候变化有关的自然灾害的数量在过去50年里翻了五倍,预计这一令人不安的趋势将继续下去。这不是自然灾害会不会发生的问题,而是什么时候发生的问题。随着全球气候挑战的加剧,领导者应该寻求卫星物联网解决方案,以帮助减少生命损失和财产损失以及地球本身。物联网技术使政府领导人能够远程监控能源资源,并根据从物联网传感器收集和传输的数据制定详细的灾难和恢复计划。由于卫星物联网即使在传统网络不足的情况下也能保持连接,因此它可以提供对资产和运营的高级可见性。在灾难响应计划的每个阶段,了解人员、车辆和设备的位置至关重要。卫星物联网使灾害管理人员能够了解他们现有的资源,并相应地协调他们的行动。安装在车辆和设备上的资产跟踪器可以根据灾难的严重程度,每隔几分钟或每天提供一次准确的GPS坐标。自定义程度的洞察力允许每个救援工作快速有效地运行。为应对自然灾害制定灵活、全面的计划的政府领导人可以最大限度地减少人员伤亡和建筑物损坏。在计划中利用物联网卫星技术使领导者能够重新控制看似无法控制的局面。我们的世界依靠技术运转,而技术依赖于对能源的可靠获取。近年来,野火、洪水、地震、冰暴和极端天气事件的日益严重,是美国停电频率和持续时间增加的主要原因。城市系统在瞬间变得无用。网络中断可能持续一天到几个月,手机信号覆盖很快就会变得稀缺。当受影响社区的关键基础设施系统面临风险时,自然灾害的后果可能会加剧。领导人可以通过使用卫星物联网信息系统与医院、养老院和精神卫生机构等弱势社区保持联系。卫星系统不会受到恶劣天气或自然灾害的破坏,可以确保在蜂窝网络覆盖不足时,连续连接以发送小批量数据,如状态更新或资产位置。在极端天气事件发生前几天,通过接入物联网卫星网络监测能源资源,可以发现节能机会,消除效率低下。它还可以检测可以指示潜在故障的异常和异常模式,这有助于降低风险。灾难发生后,即使停电,物联网卫星技术也可以为救灾人员提供最新的位置信息。公用事业供应商可以使用遥感设备来了解到需要迅速派遣维修人员的地方。当恶劣天气来临时,他们还可以预测到哪里需要提前安排维修人员。 停电,特别是与天气有关的停电,几乎总是伴随着导致经济、社会和健康损害的交叉和相关现象。卫星物联网技术正在彻底改变灾难准备和恢复的能力。随着我们继续感受到气候变化的影响,城市必须优先考虑准备工作。投资和采用新兴物联网技术的长期收益是无价的。
您觉得本篇内容如何
评分

相关产品

EN 650 & EN 650.3 观察窗

EN 650.3 version is for use with fluids containing alcohol.

Acromag 966EN 温度信号调节器

这些模块为多达6个输入通道提供了一个独立的以太网接口。多量程输入接收来自各种传感器和设备的信号。高分辨率,低噪音,A/D转换器提供高精度和可靠性。三路隔离进一步提高了系统性能。,两种以太网协议可用。选择Ethernet Modbus TCP\/IP或Ethernet\/IP。,i2o功能仅在6通道以太网Modbus TCP\/IP模块上可用。,功能

雷克兰 EN15F 其他

品牌;雷克兰 型号; EN15F 功能;防化学 名称;防化手套

Honeywell USA CSLA2EN 电流传感器

CSLA系列感应模拟电流传感器集成了SS490系列线性霍尔效应传感器集成电路。该传感元件组装在印刷电路板安装外壳中。这种住房有四种配置。正常安装是用0.375英寸4-40螺钉和方螺母(没有提供)插入外壳或6-20自攻螺钉。所述传感器、磁通收集器和壳体的组合包括所述支架组件。这些传感器是比例测量的。

TMP Pro Distribution C012EN RF 音频麦克风

C012E射频从上到下由实心黄铜制成,非常适合于要求音质的极端环境,具有非常坚固的外壳。内置的幻像电源模块具有完全的射频保护,以防止在800 Mhz-1.2 Ghz频段工作的GSM设备的干扰。极性模式:心形频率响应:50赫兹-18千赫灵敏度:-47dB+\/-3dB@1千赫

ValueTronics DLRO200-EN 毫欧表

"The DLRO200-EN ducter ohmmeter is a dlro from Megger."

Minco AH439S1N10EN 温湿度变送器

Minco空间湿度探测器组件具有温度补偿功能,结构紧凑,重量轻。它们是为直接安装在建筑内墙上而设计的。他们的特点是集成电路传感器与稳定的聚合物元件,是由烧结不锈钢过滤器封装,加上先进的微处理器,以提供准确和可重复的测量。温度输出是可选的。,用于需要:

评论

您需要登录才可以回复|注册

提交评论

提取码
复制提取码
点击跳转至百度网盘