What is IoT Gateway and How Does it Work?
An IoT gateway is a device/software program that works as a bridge between smart devices, controllers, sensors, and the cloud. The IoT (Internet of Things) gateway is the central point from where all data passes between the cloud and IoT devices. It is also known as the ‘control tier’ or ‘intelligent gateway’. It is playing a key role in hundreds of modern-day devices and rising in popularity every day. The article is about this technology to help you know what it does, and how does it work. SKYLAB will also talk about the different important factors to consider while buying intelligent gateways and other relevant information.
What Does the IoT gateway do?
IoT gateways work like network routers that rout data or information between the cloud and IoT devices. The earlier models of gateway devices were capable of only sending one-directional data; from an IoT device towards the cloud. However, the latest gateway devices available on the market support two-directional data flow; both outbound and inbound traffic. Outbound streams are utilized for sending IoT content towards the cloud. On the other hand, inbound traffic streams help in completing several device management chores, like device firmware upgrades.
A few Intelligent Gateways perform more tasks than just routing traffic. An IoT gateway can also preprocess local data on the edge prior to moving it towards the cloud. By doing this, the gateway may aggregate, summarize, or duplicate data to reduce the data volume which has to be sent towards the cloud. It will have a significant impact on network transmission and response time costs. Moreover, Intelligent Gateways can also offer extra security to the information it transports and also to IoT networks.
Organizations and companies can secure their IoT ecosystems by adapting to IoT gateways. They can do this by looking for gateways with features, like encryption, crypto engines, hardware random-number generators, and tamper detection. Such features can provide significant assistance in securing your Intelligent Gateways and shielding single devices from threats. Therefore, Intelligent Gateways have already brought a revolution in the communication world, and it is still spreading its wings.
How IoT gateways Work?
The working of an Intelligent Gateway is a bit tricky to understand, but not so much. It functions very similarly to your WiFi router. The Internet of Things (IoT) system establishes a connection with the gateway device using a wireless connection, such as WiFi. After that, the gateway device routes the data of the Internet of Things device towards the cloud. However, Internet of Things gateway devices are much more complex, more often, than ordinary WiFi routers.
The key reason why IoT gateway devices are more complex devices than WiFi routers is that an IoT device uses many diverse protocols. Those protocols include, but are not limited to BLE (Bluetooth low-energy), Z-Wave, Zigbee, and BACnet. As such, IoT gateways may need to offer support for various protocols for servicing all IoT devices within the organization. Apart from offering support for these protocols, gateways must also route all types of Internet of Things traffic towards the right destination.
There may be a need to send the data collected from various industrial sensors towards the AWS cloud database. However, the data collected from the security sensors of the building might be sent towards the SaaS vendor, operating the cloud-based portal for security. One more reason why Internet of Things Gateways are more complex is that Intelligent Gateway devices may require local data cache if the gateway is receiving abnormally huge data or as a result of the internet outage. Moreover, Intelligent Gateways habitually offer support for failover clustering to support large workloads.
Edge Computing and IoT Gateways
Some Internet of Things devices can produce data in vast quantities. It could turn into a hassle if the organization or company has various devices in their IoT ecosystem. The problem will arrive when they will try to move data or information from all these devices towards the cloud. All Internet of Things devices may deplete the internet bandwidth of the organization. Moreover, it may also become a reason for the large costs of cloud storage.
We can take the help of edge computing to avoid all such problems. Therefore, you can consider edge computing for entire or at least some data processing. We can reduce the data volumes to be moved towards the cloud using this approach. It will ultimately help in reducing both bandwidth consumption and costs.
Assume that the organization or company has a bunch of security cameras that are IoT-enabled. And, all those cameras stream real-time data. It would not make sense to move the entire raw footage of the security towards the cloud to do data processing. It is more crucial if one of the security cameras is monitoring unoccupied areas. Instead of uploading the entire footage of security cameras in real-time, it make sense that you process the footage with edge computing. An edge device will distinguish between the unimportant security footage, such as the empty area footage, and the footage that you actually need.
Edge devices are capable of taking the much-needed footage and move them towards the gateway device. Then, it moves the data towards the cloud. IoT gateway devices are vital to manage and secure IoT devices. Moreover, they may also help organizations and companies to reduce their consumption of IoT-related bandwidth for the internet.
Benefits of Internet of Things Gateways
An IoT Gateway device plays the role of a bridge between the cloud and devices/sensors. Most devices or sensors will communicate with the gateway device, and then the gateway will transmit received information towards the cloud. However, you may have a question that why do we need to use the Internet of Things Gateways between the cloud and sensors or devices. The answer is simple because there are many advantages that you can enjoy by taking this extra step. Here are the benefits of using IoT or Intelligent Gateways.
1. Battery Life
For most IoT systems, battery life is one of the most critical considerations for the users. For instance, take an Internet of Things solution that works in remote areas. To acquire data or information from devices/sensors and move them towards the cloud, we need to have a long-distance connection. Usually, the long-distance connection is the satellite connection. As we all know, greater connectivity section depth and longer distance usually mean more power consumption. Moreover, the costs also increase which turns into a big issue for small devices/sensors that have a limited life of the battery.
For Smart Agriculture, the field sensors must last years rather than just weeks or months. You can use elevated gateways around the grain silo or outbuilding top. This way, the devices or sensors will just have to move data a comparatively less distance towards the gateway. After that, the gateway would move the data towards the cloud server via one higher satellite bandwidth connection. A gateway device enables devices and sensors to send/receive data over smaller distances that boost the life of the battery.
2. Varying Protocols
The complete Internet of Things application may comprise several types of devices and sensors. Here, we will take the Smart Agriculture example again. You may need sensors for moisture, sunlight, and temperature for devices, like automated fertilizer and irrigation systems. All the diverse devices and sensors can utilize different transmission protocols.
Protocols include, but are not limited to Bluetooth, WiFi, Zigbee, and LPWAN, etc. An IoT Gateway can talk to devices and sensors over different protocols, translating acquired data into the standard protocols, like MQTT, to move towards the cloud server.
3. Unfiltered Data
In some cases, devices or sensors may generate a huge amount of data. It may result in extremely increased costs of transmitting and storing data. Moreover, the system would also find it overwhelming. Often in these cases, just a little amount of data is valuable. For instance, there is no need to move the empty room’s security camera footage to the cloud server.
A gateway device can filter the content through pre-processing to minimize the transmission, storage, and processing requirements. We can also employ some other techniques directly on the device or processor to minimize the unfiltered data amount moved towards the gateway device.
4. High Latency
For many IoT applications, time holds significant importance. It is not feasible for the devices or sensors to send data towards the cloud server and waiting for its response prior to taking action. We can avoid higher latency through data processing on a gateway device. Or, we can do the same on a sensor itself through local commands. However, various devices and sensors in the Internet of Things applications are extremely power constrained and small.
Therefore, it would not be a possibility for such devices or sensors. An IoT Gateway can minimize the latency issue in applications that are time-critical by doing processing directly on the Internet of Things gateway device itself.
5. Security
Today, every single internet-connected device and/or sensor is susceptible to hacking. We all can understand how harsh the results can be if the hacking of a device occurs. It would not only be harmful to the owner but others too who are directly or indirectly in link with the device. A gateway minimizes the internet-connected devices and sensors number since the devices and sensors are only linked with the gateway. However, the gateway itself may become a target, but it would also be the source of defense. It is why the security of any gateway holds immense importance.
For the above-discussed benefits, the Internet of Things Gateways has become a popular choice in various applications.
Use-Case Scenarios of IoT Gateways
There are so many real-use case situations where the Internet of Things Gateway devices are used. These gateways provide protected communication in the industrial OT and IT domains. Internet of Things can assist the container shipping industry via tracking every single container and also enhancing their security level. However, one challenging thing is that these containers are normally situated around the temperature-wide and wet areas. Therefore, there is a need to design an IoT Gateway for this specific industry. The gateway must ensure low consumption of power, security capabilities, operability in extreme environments, and higher processing performance.
Some of the Internet of Things use cases in different industries are:
• Precision farming
• Predictive maintenance
• Manufacturing operations
• Oil and gas
• Building management
• Asset tracking
• Smart building
• Smart grid
IoT by now is known to be the most significant technology that is helping different industries with its unparalleled benefits. The technology is expected to bring a new revolution in many industries with more innovations, enhanced security, and reliable communication.
Things to Know Before Choosing IoT Gateways
To choose the most appropriate IoT gateway for your project, it is important to consider various key factors. There is no simple rule to choose one, but you have to make your choice between your preferences and tradeoffs. Therefore, it is also essential to know every aspect of your project before you start looking for the gateway.
The key factors to consider when looking for an Intelligent Gateway include:
• Radio technology
• Operating temperature
• Local connectivity and ports
• AC power, DC power, or PoE
• Input and output ports
• Device management features
• Network redundancy
• Bridge gateway or router mode
Before you choose any gateway to kick off your Internet of Things journey, you must consider the above-listed factors.
Conclusion
Not all Internet of Things applications require a gateway. However, gateways are an essential part of the hardware that is usually a necessity for specific applications since they play a necessary part to connect devices and sensors to the cloud server. Since an IoT Gateway offers numerous benefits, so it is an ideal communication device for thousands of devices in different industries. To make sure you get the best results from your Intelligent Gateway, you must choose the right device according to your project. You can choose the most appropriate gateway by considering all the important factors we discussed in this article.
- |
- +1 赞 0
- 收藏
- 评论 0
本文由天星转载自SKYLAB,原文标题为:Introduction to IoT Gateway,本站所有转载文章系出于传递更多信息之目的,且明确注明来源,不希望被转载的媒体或个人可与我们联系,我们将立即进行删除处理。
相关推荐
How to Secure the Smart Gateway?
Security is one of the biggest challenges and we must find a way to secure those IoT gateway devices. In this article, SKYLAB will find out how to make these devices secure.
设计经验 发布时间 : 2021-12-30
【经验】天工测控LCS2028模块蓝牙功能使用指导
天工测控LCS2028是一款WiFi+蓝牙 Combo的模块,蓝牙功能除了给WiFi进行配网外,还能作为普通的BLE功能使用,本文指导如何使用LCS2028的蓝牙功能。
设计经验 发布时间 : 2023-01-20
【经验】如何通过串口更新天工测控LCS2028 WIFI模块固件
本文将指导如何通过串口升级SKYLAB(天工测控)LCS2028 WIFI模块固件,供各位工程师参考及使用。
设计经验 发布时间 : 2022-07-11
The Application Domains of Industrial IoT Gateway
In the current wave of global digitization, traditional industries are undergoing profound transformations. Industrial IoT Gateway, as one of the core technologies in this transformation, provide strong support for the digital transformation of traditional industries with their powerful functionalities and application domains. This article delves into the application domains of Industrial IoT Gateway.
技术探讨 发布时间 : 2024-05-30
UC-3100 Series Arm Cortex-A8 1 GHz IIoT gateway with built-in LTE Cat. 1 and Wi-Fi modules
型号- UC-3111-T-EULX,UC-3121-T-APLX,UC-3101-T-USLX,UC-3100,UC-3111-T-APLX,UC-3100 SERIES,UC-3111-T-USLX,UC-3121-T-USLX,UC-3101-T-EULX,UC-3121-T-EULX,UC-3101-T-APLX
System Product Datasheet
型号- BOXER-6639M,FWS-2360,RTC-600A,VPC-5500S,FWS-8600,FWS-7830,OMNI-2000,RTC-700RK,RTC-1200SK,BOXER-8110AI,RTC-1010,BOXER-6405,1BOXER-6841M,OMNI-DISPLAY,RTC-900B,ACP-1104,FWS-2272,VPC-3300S,RTC-700B,UP-GWS01,NVR-Q67S,AIOT-IGWS01,AIOT-IP6801,VPC-5600S,BOXER-6404M,ACP-1106,UPC-GWS01,AIOT-ILRA01,BOXER-6750,OMNI-3000,BOXER-8120AI,UPS-GWS01,BOXER-6616,ACP-1074,BOXER-6839,ACP-1076
INTRODUCING RZ PARTNER ECOSYSTEM SOLUTIONS
型号- RZ/N1D,RZ/G2UL,RB-RZLC,RZ/A SERIES,RZ,RZ FAMILY,RZ/N1 SERIES,RZV,RZ/V2L,RZ/V2M,RZ/A3UL,RZ/A,RZ/N,RZ/G2L,RB-RZUL,RZ/G2LC,RZ/G,RZ/N1,RZ/V,RZ/T1,RZ/G2E,RZ/T,R9A06G032,RZ/G2H,RZG2L-EK-200,RZ/G SERIES,RZ/FIVE,R9A07G043F01GBG,RZA3UL-EK-200,RZFIVE-EK-200,RZ/N SERIES,RZ/V SERIES,RZG2UL-EK-200,RZ/T SERIES,RZ/G2X,RZG2E
天工测控(Skylab)无线模块选型表
描述- 深圳市天工测控技术有限公司(Skylab M&C Technology Co.,Ltd),是一家专业从事GNSS、WiFi、蓝牙等无线产品的研究和应用的高新技术企业。旨在向国内外OEM/ODM客户以及系统集成商提供高品质、高性能的无线模块和应用方案,致力为客户创造长期的价值和潜在的增长。
型号- SKM2101,WG209,SKG122C,SKM88,SKW92B,SKM89,SKW92A,SKM2102,SKG17DT,SKM2105FR,SKM86,TR6260,SKM2505,MT7612E,SKM2105,MT7688A,SKG12D,SKG122S,SKG12F,SKW496C,SKM2308DR,SKG12A,SKG092C,SKG122Y,SKW497,SKM80,SKM81,SKM82,SKG09BL,SKW3000,SKG093Q,SKG122GR,SKG093N,SKB501,SKG1223,SKG121S,SKG121T,RTL8812,SKM61C,RTL8811,ESP32-H2,MT7610E,SKG12BL,SKM2505NR,SKG16BL,SKG12DT,WG822,SKG123NRD,WG821,SKG12UR,SKM2305NDR,SKM2102SR,SKG09DT,SKM2105QR,MT7601,RTL8821CS,SKM2102CR,SKG123L,SKG122ER,SKG123N,SKG17D,LCS6260,SKG123Q,SKW101,SKW100,SKW103,SKG123NR,SKG121SA,MT7620A,WG243,SKM2308,SKG09,ESP32-S3,SKM2302,SKM2305,SKG123NT,QCA9887,MT7628,SKM-6DM,SKW78,LCS2028,BK7231,SKM2302DR,RTL8822CS,ESP32-C2,MT7981,ESP32-C5,SKM2102ER,SKB380,SKB381,WG239,BL2028,SKG8212,SKM65C,WG233,SKW77,WG231,MT7603E,WG238,ESP8266,WG237,WG236,WG235,ESP32,WG241,QCA9531,WG240,RTL8852,SKM81F,SKG123ND,SKM65,WG229,SKM61,SKM2105DR,SKW17AE,SKB376,WG222,SKB379,SKB378,ECR6600,WG226,WG225,SKB369AA,SKM80D,SKG172T,MT7697D,SKM2101MR,SKM80F,SKG16,SKG17,SKM55,WG219,SKB360,WG217,SKW93A,SKG12,SKB362,SKM51,SKB361,SKM52,SKM53,SKG09D,ESP8285,SKG09F,SKW99,MT7621A,SKG09A,SKB369,WG215,SKG09L,SKM51G,SKM51F,SKM51C,MT7628N,SKB360I,IPQ6000,SKM2105NR
天工测控SKG系列GNSS模块精度差异与RTK技术详解
RTK也称载波相位差分技术,通过对两测站的载波相位观测值进行实时处理,能实时提供测站的三维坐标,并达到厘米级或者毫米级的高精度。深圳市天工测控的RTK模块如SKG122ER等,支持多种配置,通过指令控制基站坐标锁定、伪距平滑、数据输出等,提高定位精度。
技术探讨 发布时间 : 2024-09-06
【元件】天工测控千兆网WiFi模块SKW78搭载三芯片性能卓越,符合WiFi 5标准
SKW78是深圳市天工测控研发的一款千兆网WiFi模块,该模块符合WiFi5标准,集成3个千兆速度的WAN口或LAN口,搭载三个芯片具有更强的性能。
产品 发布时间 : 2024-07-04
【选型】交通信号灯高精度天工测控GNSS授时模块选型技巧
交通信号灯在一定程度上能够起到缓解交通压力的作用,而作用其中的GNSS授时模块才是主力高效,准确,实时的对城市交通信号灯进行统一授时的大功臣。本文天工测控就以北斗授时模块为切入点,简单介绍一下交通信号灯授时模块的选型要点。
器件选型 发布时间 : 2021-11-05
Industrial Gateway, IoT Gateway, and PLC Gateway: Bridge Connecting the Intelligent Future
In the era of Industry 4.0 and the booming Internet of Things (IoT), industrial gateways, IoT gateways, and PLC gateways, as key technologies, are gradually becoming important forces in promoting the transformation and upgrading of traditional industries. These gateways are not only bridges connecting the physical and digital worlds, but also core hubs for achieving intelligence, automation, and remote monitoring.
技术探讨 发布时间 : 2024-08-24
【元件】天工测控WIFI模块SKW92A,工作速率达144Mbps,电源电压3.3V,广泛用于物联网领域
天工测控WIFI模块SKW92A,它包含有一个802.11n MAC和基带、一个2.4GHz无线电和FEM、一个580MHz MIPS CPU、一个5端口10/100快速以太网交换机。并且适用于低功耗、低成本和高集成度的AP路由器和消费电子设备。
产品 发布时间 : 2024-04-16
电子商城
服务
定制液冷板尺寸5mm*5mm~3m*1.8m,厚度2mm-100mm,单相液冷板散热能力最高300W/cm²。
最小起订量: 1片 提交需求>
支持 3Hz ~ 26.5GHz射频信号中心频率测试;9kHz ~ 3GHz频率范围内Wi-SUN、lora、zigbee、ble和Sub-G 灵敏度测量与测试,天线阻抗测量与匹配电路调试服务。支持到场/视频直播测试,资深专家全程指导。
实验室地址: 深圳/苏州 提交需求>
登录 | 立即注册
提交评论