{"title":"ASIS Edge Computing Model to Determine the Communication Protocols for IoT Based Irrigation","authors":"S. Premkumar, A. Sigappi","doi":"10.13052/jmm1550-4646.18321","DOIUrl":null,"url":null,"abstract":"Internet of Things (IoT) provide a promising Smart irrigation facilitator for continual monitoring and control of environmental parameters, thereby leading to a huge volume of data to be efficiently collected, transferred, processed and stored. The deployment of cloud-based infrastructure with on-field connectedness, allowing information exchange among IoT nodes, and the usage of energy scavenging (e.g., solar power) in feeding them, become necessary, since agricultural fields are in lack of wired energy supply and, often, a reliable (Internet) network coverage. Therefore, these issues can be addressed through the integration of Edge computing in IoT scenarios. An efficient strategy is required to select the best communication technology with a motive of increasing the network performance between the IoT devices, Edge device and cloud. Application Specific Infrastructure Selection (ASIS) is an edge computing model developed to select the appropriate communication protocols according to the infrastructure requirements of three different real time scenarios namely: Assembly line automation, Smart parking system and Automatic irrigation system are deployed to get the most suitable application specific protocol from ZigBee, LoRa (Long Range) and LoWPAN (Low-Power Wireless Personal Area Network) to implement in real-time basis. ASIS model is proposed as a network resource manager that is capable of sensing, acting, signal processing, and/or communication abilities to perform a protocol selection according to their physical and technological limitations. Further Edge based ASIS model is developed to enhance the network performance even better when compared with cloud-based model. Automatic irrigation system is extended in the Edge based ASIS model. The overall ASIS system is evaluated by means of network parameters such as network usage, network delay and power consumption. The ASIS model and Edge based ASIS model is deployed in iFogSim simulator that compares each protocol used in the above IoT scenarios. Finally, the scenario of Automatic irrigation system is modeled using Edge based ASIS model where ZigBee with edge performs better compared with cloud-based model. Experimental results show that ASIS based Edge implementation lessen the overall network parameters in contrast to non-edge deployment in automatic irrigation scenario.","PeriodicalId":425561,"journal":{"name":"J. Mobile Multimedia","volume":"69 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2022-02-04","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"2","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"J. Mobile Multimedia","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.13052/jmm1550-4646.18321","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 2
Abstract
Internet of Things (IoT) provide a promising Smart irrigation facilitator for continual monitoring and control of environmental parameters, thereby leading to a huge volume of data to be efficiently collected, transferred, processed and stored. The deployment of cloud-based infrastructure with on-field connectedness, allowing information exchange among IoT nodes, and the usage of energy scavenging (e.g., solar power) in feeding them, become necessary, since agricultural fields are in lack of wired energy supply and, often, a reliable (Internet) network coverage. Therefore, these issues can be addressed through the integration of Edge computing in IoT scenarios. An efficient strategy is required to select the best communication technology with a motive of increasing the network performance between the IoT devices, Edge device and cloud. Application Specific Infrastructure Selection (ASIS) is an edge computing model developed to select the appropriate communication protocols according to the infrastructure requirements of three different real time scenarios namely: Assembly line automation, Smart parking system and Automatic irrigation system are deployed to get the most suitable application specific protocol from ZigBee, LoRa (Long Range) and LoWPAN (Low-Power Wireless Personal Area Network) to implement in real-time basis. ASIS model is proposed as a network resource manager that is capable of sensing, acting, signal processing, and/or communication abilities to perform a protocol selection according to their physical and technological limitations. Further Edge based ASIS model is developed to enhance the network performance even better when compared with cloud-based model. Automatic irrigation system is extended in the Edge based ASIS model. The overall ASIS system is evaluated by means of network parameters such as network usage, network delay and power consumption. The ASIS model and Edge based ASIS model is deployed in iFogSim simulator that compares each protocol used in the above IoT scenarios. Finally, the scenario of Automatic irrigation system is modeled using Edge based ASIS model where ZigBee with edge performs better compared with cloud-based model. Experimental results show that ASIS based Edge implementation lessen the overall network parameters in contrast to non-edge deployment in automatic irrigation scenario.
物联网(IoT)为持续监测和控制环境参数提供了一个有前景的智能灌溉促进者,从而导致大量数据被有效地收集、传输、处理和存储。由于农业领域缺乏有线能源供应,并且通常缺乏可靠的(互联网)网络覆盖,因此部署具有现场连接的基于云的基础设施,允许物联网节点之间的信息交换,并使用能量清除(例如太阳能)来为它们提供食物变得必要。因此,可以通过在物联网场景中集成边缘计算来解决这些问题。为了提高物联网设备、边缘设备和云之间的网络性能,需要一个有效的策略来选择最佳的通信技术。Application Specific Infrastructure Selection (ASIS)是一种边缘计算模型,用于根据装配线自动化、智能停车系统和自动灌溉系统三种不同实时场景的基础设施需求选择合适的通信协议,从ZigBee、LoRa (Long Range)和LoWPAN (Low-Power Wireless Personal Area Network)中获得最适合的特定应用协议进行实时实现。ASIS模型被认为是一种网络资源管理器,它具有感知、行动、信号处理和/或通信能力,可以根据其物理和技术限制执行协议选择。进一步开发了基于边缘的ASIS模型,与基于云的模型相比,可以更好地提高网络性能。将自动灌溉系统扩展为基于边缘的ASIS模型。通过网络使用、网络延迟和功耗等网络参数对整个ASIS系统进行了评估。在iFogSim模拟器中部署ASIS模型和基于Edge的ASIS模型,对上述物联网场景中使用的每种协议进行比较。最后,采用基于边缘的ASIS模型对自动灌溉系统的场景进行建模,与基于云的模型相比,具有边缘的ZigBee具有更好的性能。实验结果表明,在自动灌溉场景下,与非边缘部署相比,基于ASIS的边缘部署减少了整体网络参数。