Previous Article in Journal
Centralized Two-Tiered Tree-Based Intrusion-Detection System (C2T-IDS)
 
 
Font Type:
Arial Georgia Verdana
Font Size:
Aa Aa Aa
Line Spacing:
Column Width:
Background:
This is an early access version, the complete PDF, HTML, and XML versions will be available soon.
Article

WireDepth: IoT-Enabled Multi-Sensor Depth Monitoring for Precision Subsoiling in Sugarcane

by
Saman Abdanan Mehdizadeh
1,*,
Aghajan Bahadori
2,
Manocheher Ebadian
2,
Mohammad Hasan Sadeghian
2,
Mansour Nasr Esfahani
3 and
Yiannis Ampatzidis
4
1
Department of Mechanics of Biosystems Engineering, Faculty of Agricultural and Rural Development, Agricultural Sciences and Natural Resources University of Khuzestan, Ahvaz 63417-73637, Iran
2
Sugarcane & By-Products Development Research & Training, Institute of Khuzestan, Ahvaz 61348-14617, Iran
3
Intelligent Automation Laboratory, Ramin SmartWare Company, Ahvaz 63417-73637, Iran
4
Agricultural and Biological Engineering Department, Southwest Florida Research and Education Center, IFAS, University of Florida, Immokalee, FL 34142, USA
*
Author to whom correspondence should be addressed.
Submission received: 6 October 2025 / Revised: 9 November 2025 / Accepted: 11 November 2025 / Published: 14 November 2025

Abstract

Subsoil compaction is a major constraint in sugarcane production, limiting yields and reducing resource-use efficiency. This study presents WireDepth, an innovative cloud-connected monitoring system that leverages edge computing and IoT technologies for real-time, spatially aware analysis and visualization of subsoiling depth. The system integrates ultrasonic, laser, inclinometer, and potentiometer sensors mounted on the subsoiler, with on-board microcontroller processing and dual wireless connectivity (LoRaWAN and NB-IoT/LTE-M) for robust data transmission. A cloud platform delivers advanced analytics, including 3D depth maps and operational efficiency metrics. System accuracy was assessed using 300 reference depth measurements, with Root Mean Square Error (RMSE) and Mean Absolute Percentage Error (MAPE) calculated per sensor. The inclinometer and potentiometer achieved the highest accuracy (MAPE of 0.92% and 0.84%, respectively), with no significant deviation from field measurements (paired t-tests, p > 0.05). Ultrasonic and laser sensors exhibited higher errors, particularly at shallow depths, due to soil debris interference. Correlation analysis confirmed a significant effect of depth on sensor accuracy, with laser sensors showing the strongest association (Pearson r = 0.457, p < 0.001). Field validation in commercial sugarcane fields demonstrated that WireDepth improves subsoiling precision, reduces energy waste, and supports sustainable production by enhancing soil structure and root development. These findings advance precision agriculture by offering a scalable, real-time solution for subsoiling management, with broad implications for yield improvement in compaction-affected systems.
Keywords: precision agriculture; LoRaWAN; sustainable farming; edge computing precision agriculture; LoRaWAN; sustainable farming; edge computing

Share and Cite

MDPI and ACS Style

Mehdizadeh, S.A.; Bahadori, A.; Ebadian, M.; Sadeghian, M.H.; Esfahani, M.N.; Ampatzidis, Y. WireDepth: IoT-Enabled Multi-Sensor Depth Monitoring for Precision Subsoiling in Sugarcane. IoT 2025, 6, 68. https://doi.org/10.3390/iot6040068

AMA Style

Mehdizadeh SA, Bahadori A, Ebadian M, Sadeghian MH, Esfahani MN, Ampatzidis Y. WireDepth: IoT-Enabled Multi-Sensor Depth Monitoring for Precision Subsoiling in Sugarcane. IoT. 2025; 6(4):68. https://doi.org/10.3390/iot6040068

Chicago/Turabian Style

Mehdizadeh, Saman Abdanan, Aghajan Bahadori, Manocheher Ebadian, Mohammad Hasan Sadeghian, Mansour Nasr Esfahani, and Yiannis Ampatzidis. 2025. "WireDepth: IoT-Enabled Multi-Sensor Depth Monitoring for Precision Subsoiling in Sugarcane" IoT 6, no. 4: 68. https://doi.org/10.3390/iot6040068

APA Style

Mehdizadeh, S. A., Bahadori, A., Ebadian, M., Sadeghian, M. H., Esfahani, M. N., & Ampatzidis, Y. (2025). WireDepth: IoT-Enabled Multi-Sensor Depth Monitoring for Precision Subsoiling in Sugarcane. IoT, 6(4), 68. https://doi.org/10.3390/iot6040068

Article Metrics

Back to TopTop