Has Mislav, Kreković Dora, Kušek Mario, Podnar Žarko Ivana
Internet of Things Laboratory, Faculty of Electrical Engineering and Computing, University of Zagreb, HR-10000 Zagreb, Croatia.
Sensors (Basel). 2024 May 30;24(11):3517. doi: 10.3390/s24113517.
The integration of Internet of Things (IoT) technology into agriculture has revolutionized farming practices by using connected devices and sensors to optimize processes and facilitate sustainable execution. Because most IoT devices have limited resources, the vital requirement to efficiently manage data traffic while ensuring data security in agricultural IoT solutions creates several challenges. Therefore, it is important to study the data amount that IoT protocols generate for resource-constrained devices, as it has a direct impact on the device performance and overall usability of the IoT solution. In this paper, we present a comprehensive study that focuses on optimizing data transmission in agricultural IoT solutions with the use of compression algorithms and secure technologies. Through experimentation and analysis, we evaluate different approaches to minimize data traffic while protecting sensitive agricultural data. Our results highlight the effectiveness of compression algorithms, especially Huffman coding, in reducing data size and optimizing resource usage. In addition, the integration of encryption techniques, such as AES, provides the security of the transmitted data without incurring significant overhead. By assessing different communication scenarios, we identify the most efficient approach, a combination of Huffman encoding and AES encryption, to strike a balance between data security and transmission efficiency.
将物联网(IoT)技术融入农业,通过使用连接设备和传感器来优化流程并促进可持续执行,从而彻底改变了耕作方式。由于大多数物联网设备资源有限,在农业物联网解决方案中高效管理数据流量同时确保数据安全的关键要求带来了诸多挑战。因此,研究物联网协议为资源受限设备生成的数据量非常重要,因为这直接影响设备性能和物联网解决方案的整体可用性。在本文中,我们进行了一项全面研究,重点是利用压缩算法和安全技术优化农业物联网解决方案中的数据传输。通过实验和分析,我们评估了不同方法,以在保护敏感农业数据的同时尽量减少数据流量。我们的结果突出了压缩算法,尤其是霍夫曼编码,在减少数据大小和优化资源使用方面的有效性。此外,诸如AES等加密技术的集成在不产生大量开销的情况下提供了传输数据的安全性。通过评估不同的通信场景,我们确定了最有效的方法,即霍夫曼编码和AES加密相结合,以在数据安全和传输效率之间取得平衡。