Design and Fabrication of Nondestructive Capacitive Sensors for the Moisture Measurement in Chickpeas and Mustard Seeds

Author:

Aswani Geetika1ORCID,Maurya Om Prakash1ORCID,Mahboob Rahat2ORCID,Khan Anwar Ulla3ORCID,Islam Tarikul1ORCID

Affiliation:

1. Electrical Engineering Department, Jamia Millia Islamia, New Delhi 110025, India

2. Electrical Engineering Department, Tezpur Central University, Tezpur 784028, Assam, India

3. Department of Electrical Engineering Technology, College of Applied Industrial Technology, Jazan University, Jazan 45142, Saudi Arabia

Abstract

Moisture in food grains, including chickpea and mustard seeds, plays a crucial role in their storage and processing, thus ensuring food quality. It helps in the improvement of preservation techniques. Moisture in these materials is an age-old problem; hence, it is important to monitor it in real time. The conventional gravimetric method is manual and time-consuming; some online electrical techniques are available in which grains are considered as a dielectric material, but they are relatively complex and costly. This present work describes a nondestructive concentric fringing field (CFF) capacitive sensor to detect moisture (4–33% by absolute weight) of chickpea grain and (12–30% by absolute weight) mustard seed. First, the proposed CFF sensor was modeled, and then three distinct concentric sensors were designed, simulated, fabricated, and experimentally validated to determine moisture in chickpea grains and mustard seeds. The capacitance values of all the sensors approximately linearly varied with the changes in the moisture of the grains. The average sensitivity of the most sensitive sensors was close to 20 fF/% wt for chickpeas and 31 fF/% wt for mustard seeds. The proposed sensor is sensitive, nondestructive, easy to use, inexpensive, and fast.

Funder

Deputyship for Research & Innovation, Ministry of Education in Saudi Arabia

Publisher

MDPI AG

Reference40 articles.

1. Aswani, G., and Islam, T. (2023, January 10–12). Capacitive fringing sensor based on PCB for the detection of moisture content in grain. Proceedings of the 2023 International Conference on Power, Instrumentation, Energy and Control (PIECON), Aligarh, India.

2. Electrocoagulation treatment of rice grain based distillery effluent using copper electrode;Prajapati;J. Water Process Eng.,2016

3. On research of automatic control about moisture content for cereal grains;Li;J. Shenyang Norm. Univ.,2008

4. An on-line measurement and monitoring system for grain moisture during the drying process;Cheng;Trans. Chin. Soc. Agric. Mach.,2000

5. Design of Team Economic Accounting Management System in Petrochemical Industry;Guan;Int. J. Digit. Content Technol.,2011

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