Deploying an energy efficient, secure & high-speed sidechain-based TinyML model for soil quality monitoring and management in agriculture

被引:14
作者
Bhattacharya, Saurabh [1 ]
Pandey, Manju [1 ]
机构
[1] Natl Inst Technol Raipur, Dept Comp Applicat, Raipur, Chhattisgarh, India
关键词
Soil quality monitoring; Tiny ML; Energy; Delay; Farms; Accuracy; Scenarios; BLOCKCHAIN; MOISTURE; IOT; FRAMEWORK; SELECTION; SYSTEM; SMAP;
D O I
10.1016/j.eswa.2023.122735
中图分类号
TP18 [人工智能理论];
学科分类号
081104 ; 0812 ; 0835 ; 1405 ;
摘要
This paper presents an innovative deployment strategy for a power-aware and delay-aware TinyML model optimized for agricultural soil quality monitoring and management. The proposed method employs an enhanced fusion of Dynamic Voltage and Frequency Scaling (DVFS), Sleep/Wake Strategies based on Genetic Algorithms, Energy Harvesting, and Task Partitioning. Through this method, the model reduces energy consumption by 8.5% and delay by 10.4%, while maintaining accuracy comparable to state-of-the-art techniques such as Convolutional Neural Networks (CNNs), Recurrent Neural Networks (RNNs), and Q Learning techniques. The proposed model also uses a Proof-of-Energy Efficiency (PoEE) based consensus for creation of new blocks. These blocks are added to different sidechains for strengthening the security levels. While blockchains require higher energy during mining, the proposed PoEE Model uses a light weight consensus, which is backed by Q Learning based sidechain formation process. This lightweighted combination allows the model to reduce delay, maintain lower energy consumption, with better communication throughput even under multiple attack scenarios. This model is necessary due to the growing demand for sustainable and accurate agricultural practices. The quality of the soil is crucial to soil yield and productivity. Monitoring and managing soil conditions enables farmers to optimize irrigation, fertilization, and overall resource allocation, leading to an increase in soil yield and a decrease in environmental impacts. However, the deployment of energy-efficient and low-latency TinyML models is essential to enable real-time decision-making in agricultural settings with limited resources. This power-aware and delayaware TinyML model has applications in various agricultural real-time scenarios. It can be used to continuously monitor soil quality parameters including moisture content, pH level, and nutrient levels for various farm types. Incorporating sensors and low-power microcontrollers, the model enables on-site analysis and timely farmer feedbacks. The decreased energy consumption extends the battery life of deployed devices, whereas the decreased delay ensures that soil management interventions and treatments are responsive and timely for different scenarios.
引用
收藏
页数:11
相关论文
共 49 条
[1]   Improved Feature Selection Method for the Identification of Soil Images Using Oscillating Spider Monkey Optimization [J].
Agarwal, Rahul ;
Shekhawat, Narpat Singh ;
Kumar, Sandeep ;
Nayyar, Anand ;
Qureshi, Basit .
IEEE ACCESS, 2021, 9 :167128-167139
[2]   Adaptive Storage Optimization Scheme for Blockchain-IIoT Applications Using Deep Reinforcement Learning [J].
Akrasi-Mensah, Nana Kwadwo ;
Agbemenu, Andrew Selasi ;
Nunoo-Mensah, Henry ;
Tchao, Eric Tutu ;
Ahmed, Abdul-Rahman ;
Keelson, Eliel ;
Sikora, Axel ;
Welte, Dominik ;
Kponyo, Jerry John .
IEEE ACCESS, 2023, 11 :1372-1385
[3]   On the Integration of Blockchain With IoT and the Role of Oracle in the Combined System: The Full Picture [J].
Al Sadawi, Alia ;
Hassan, Mohamed S. ;
Ndiaye, Malick .
IEEE ACCESS, 2022, 10 :92532-92558
[4]   A Secure Blockchain Platform for Supporting AI-Enabled IoT Applications at the Edge Layer [J].
Alrubei, Subhi M. ;
Ball, Edward ;
Rigelsford, Jonathan M. .
IEEE ACCESS, 2022, 10 :18583-18595
[5]   Dynamic Secure Access Control and Data Sharing Through Trusted Delegation and Revocation in a Blockchain-Enabled Cloud-IoT Environment [J].
Alshehri, Suhair ;
Bamasaq, Omaimah ;
Alghazzawi, Daniyal ;
Jamjoom, Arwa .
IEEE INTERNET OF THINGS JOURNAL, 2023, 10 (05) :4239-4256
[6]   Sentinel-MSI and Landsat-OLI Data Quality Characterization for High Temporal Frequency Monitoring of Soil Salinity Dynamic in an Arid Landscape [J].
Bannari, Abdou ;
Musa, Nadir Hameid Mohamed ;
Abuelgasim, Abdelgadir ;
El-Battay, Ali .
IEEE JOURNAL OF SELECTED TOPICS IN APPLIED EARTH OBSERVATIONS AND REMOTE SENSING, 2020, 13 :2434-2450
[7]   Novel and Secure Blockchain Framework for Health Applications in IoT [J].
Bataineh, Marah R. ;
Mardini, Wail ;
Khamayseh, Yaser M. ;
Yassein, Muneer Masadeh Bani .
IEEE ACCESS, 2022, 10 :14914-14926
[8]   Soil quality index as a tool to assess biochars soil quality improvement in a heavy metal-contaminated soil [J].
Carnier, Ruan ;
de Abreu, Cleide Aparecida ;
de Andrade, Cristiano Alberto ;
Fernandes, Ana Olivia ;
Silveira, Adriana Parada Dias ;
Coscione, Aline Renee .
ENVIRONMENTAL GEOCHEMISTRY AND HEALTH, 2023, 45 (08) :6027-6041
[9]   Next-Generation Soil Moisture Sensor Web: High-Density In Situ Observation Over NB-IoT [J].
Chen, Dong ;
Chen, Nengcheng ;
Zhang, Xiang ;
Ma, Hongliang ;
Chen, Zeqiang .
IEEE INTERNET OF THINGS JOURNAL, 2021, 8 (17) :13367-13383
[10]   A New Fusion Algorithm for Simultaneously Improving Spatio-Temporal Continuity and Quality of Remotely Sensed Soil Moisture Over the Tibetan Plateau [J].
Cui, Yaokui ;
Zeng, Chao ;
Chen, Xi ;
Fan, Wenjie ;
Liu, Haijiang ;
Liu, Yuan ;
Xiong, Wentao ;
Sun, Cong ;
Luo, Zengliang .
IEEE JOURNAL OF SELECTED TOPICS IN APPLIED EARTH OBSERVATIONS AND REMOTE SENSING, 2021, 14 :83-91