Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

A Tutorial on Agricultural IoT: Fundamental Concepts, Architectures, Routing, and Optimization

View through CrossRef
This paper presents an in-depth contextualized tutorial on Agricultural IoT (Agri-IoT), covering the fundamental concepts, assessment of routing architectures and protocols, and performance optimization techniques via systematic survey and synthesis of related literature. The negative impacts of climate change and the increasing global population on food security and unemployment threats have motivated the adoption of the wireless sensor network (WSN)-based Agri-IoT as an indispensable underlying technology in precision agriculture and greenhouses to improve food production capacities and quality. However, most related Agri-IoT testbed solutions have failed to achieve their performance expectations due to the lack of an in-depth and contextualized reference tutorial that provides a holistic overview of communication technologies, routing architectures, and performance optimization modalities based on users’ expectations. Thus, although IoT applications are founded on a common idea, each use case (e.g., Agri-IoT) varies based on specific performance and users expectations as well as its technological, architectural, and deployment requirements. Likewise, the agricultural setting is a unique and hostile area where conventional IoT technologies do not apply, hence the need for this tutorial. Consequently, this tutorial addresses these via the following contributions: (1) a systematic overview of the fundamental concepts, technologies, and architectural standards of WSN-based Agri-IoT, (2) an evaluation of the technical design requirements of a robust, location-independent, and affordable Agri-IoT, (3) a comprehensive survey of the benchmarking fault tolerance techniques, communication standards, routing and medium access control (MAC) protocols, and WSN-based Agri-IoT testbed solutions, and (4) an in-depth case study on how to design a self-healing, energy-efficient, affordable, adaptive, stable, autonomous, and cluster-based WSN-specific Agri-IoT from a proposed taxonomy of multi-objective optimization (MOO) metrics that can guarantee an optimized network performance. Furthermore, this tutorial established new taxonomies of faults, architectural layers, and MOO metrics for cluster-based Agri-IoT (CA-IoT) networks and a 3-tier objective framework with remedial measures for designing an efficient associated supervisory protocol for cluster-based Agri-IoT networks.
Title: A Tutorial on Agricultural IoT: Fundamental Concepts, Architectures, Routing, and Optimization
Description:
This paper presents an in-depth contextualized tutorial on Agricultural IoT (Agri-IoT), covering the fundamental concepts, assessment of routing architectures and protocols, and performance optimization techniques via systematic survey and synthesis of related literature.
The negative impacts of climate change and the increasing global population on food security and unemployment threats have motivated the adoption of the wireless sensor network (WSN)-based Agri-IoT as an indispensable underlying technology in precision agriculture and greenhouses to improve food production capacities and quality.
However, most related Agri-IoT testbed solutions have failed to achieve their performance expectations due to the lack of an in-depth and contextualized reference tutorial that provides a holistic overview of communication technologies, routing architectures, and performance optimization modalities based on users’ expectations.
Thus, although IoT applications are founded on a common idea, each use case (e.
g.
, Agri-IoT) varies based on specific performance and users expectations as well as its technological, architectural, and deployment requirements.
Likewise, the agricultural setting is a unique and hostile area where conventional IoT technologies do not apply, hence the need for this tutorial.
Consequently, this tutorial addresses these via the following contributions: (1) a systematic overview of the fundamental concepts, technologies, and architectural standards of WSN-based Agri-IoT, (2) an evaluation of the technical design requirements of a robust, location-independent, and affordable Agri-IoT, (3) a comprehensive survey of the benchmarking fault tolerance techniques, communication standards, routing and medium access control (MAC) protocols, and WSN-based Agri-IoT testbed solutions, and (4) an in-depth case study on how to design a self-healing, energy-efficient, affordable, adaptive, stable, autonomous, and cluster-based WSN-specific Agri-IoT from a proposed taxonomy of multi-objective optimization (MOO) metrics that can guarantee an optimized network performance.
Furthermore, this tutorial established new taxonomies of faults, architectural layers, and MOO metrics for cluster-based Agri-IoT (CA-IoT) networks and a 3-tier objective framework with remedial measures for designing an efficient associated supervisory protocol for cluster-based Agri-IoT networks.

Related Results

Analisa Perbandingan Kinerja Protokol Routing Rip Dan Ospf Menggunakan IPv4
Analisa Perbandingan Kinerja Protokol Routing Rip Dan Ospf Menggunakan IPv4
Abstrak - Penelitian bertujuan untuk dapat membandingkan kinerja protokol routing RIP dan OSPF menggunakan IPv4 bertujuan untuk dapat melakukan perbaingan dua metode touting yaitu ...
Analisa dan Perbandingan Kinerja Routing Protocol OSPF dan EIGRP dalam Simulasi GNS3
Analisa dan Perbandingan Kinerja Routing Protocol OSPF dan EIGRP dalam Simulasi GNS3
Router is the network equipment for route the packet from one network segment to another in a bigscale network. Router can route packet because there is a routing table in router c...
Jaringan Komputer 4 Konfigurasi Routing Dynamic Akhmad Syarifudin 175100012
Jaringan Komputer 4 Konfigurasi Routing Dynamic Akhmad Syarifudin 175100012
Dynamic Routing atau Routing Dynamic (dinamik) adalah sebuah router yang memiliki dan membuat tabel routing secara otomatis. Dengan menggunakan lalu lintas jaringan dan juga salin...
PENGARUH MODEL JARINGAN TERHADAP OPTIMASI ROUTING OPEN SHORTEST PATH FIRST (OSPF)
PENGARUH MODEL JARINGAN TERHADAP OPTIMASI ROUTING OPEN SHORTEST PATH FIRST (OSPF)
ABSTRAK Routing merupakan proses mengirim data dari satu network ke network lain. Dengan dynamic routing maka mekanisme routing dilakukan secara dinamis dengan menentukan jarak ter...
Jaringan Komputer 4 Konfigurasi Routing Dynamic (Akhmad Syarifudin 175100012)
Jaringan Komputer 4 Konfigurasi Routing Dynamic (Akhmad Syarifudin 175100012)
Dynamic Routing atau Routing Dynamic (dinamik) adalah sebuah router yang memiliki dan membuat tabel routing secara otomatis. Dengan menggunakan lalu lintas jaringan dan juga salin...
Pelatihan Internet of Things (IoT) dalam peningkatan kompetensi siswa multimedia di SMK Perguruan Buddhi
Pelatihan Internet of Things (IoT) dalam peningkatan kompetensi siswa multimedia di SMK Perguruan Buddhi
Pelatihan Internet of Things (IoT) menjadi bagian penting dalam pengembangan kompetensi siswa jurusan multimedia di SMK Perguruan Buddhi. Era digital menuntut adanya pemahaman mend...
Studi Komparasi Kinerja Interior Gateway Protocol Berbasis Distance Vector dan Link State
Studi Komparasi Kinerja Interior Gateway Protocol Berbasis Distance Vector dan Link State
Routing Protocol merupakan seperangkat aturan yang digunakan oleh router untuk menentukan jalur dalam meneruskan paket data ke jaringan tujuan. Pemilihan rute penting dilakukan aga...
Routing Security in Wireless Sensor Networks
Routing Security in Wireless Sensor Networks
Since routing is a fundamental operation in all types of networks, ensuring routing security is a necessary requirement to guarantee the success of routing operation. Securing rout...

Back to Top