Design and experimentation of a solar-powered robot for cleaning the greenhouse roofs

被引:8
作者
Amin, Ahmed [1 ,2 ]
Wang, Xiaochan [1 ]
Sun, Guoxiang [1 ]
Shi, Yinyan [1 ]
Ndumiaassan, Joseph Ndiithi [1 ]
Okasha, Mahmoud [2 ]
机构
[1] Nanjing Agr Univ, Coll Engn, 40 Dianjiangtai Rd, Nanjing 210032, Peoples R China
[2] Agr Res Ctr ARC, Agr Engn Res Inst AEnRI, Giza 12311, Egypt
关键词
Arduino IDE; Cleaning robots; Greenhouse; Light transmittance; Solar-powered; POPULATION; DYNAMICS;
D O I
10.1016/j.rineng.2024.102602
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Greenhouse technology is crucial for combating climate change and enhancing off-season produce and crop yield. Dust build-up on greenhouse roofs remains a significant problem, significantly reducing light transmission and affecting plant growth. Therefore, this study aims to classify dust build-up on greenhouse roofs and to address it by designing, manufacturing, operating, and evaluating a solar-powered cleaning robot system. Water and cement removal agent (CRA) with different mixing ratios were selected to clean the greenhouse roof. The initial findings demonstrate the greenhouse cover's ability to allow light to pass through can differentiate between different levels of dust accumulation. This study reveals that 88 %-93 % of transmittance levels indicate a clean roof, 82 %-87 % reveal minor dust accumulation, 81 %-75 % denote moderate dust accumulation, and below 75 % signify major dust accumulation. This increased the efficiency of the light intensity for minor dust roofs from 39,285 to 41,731 lux ((CRA) 1:3 water), moderate dust roofs from 36,777 to 39,383 lux ((CRA) 1:1 water), and major dust roofs from 30,585 to 35,525 lux (CRA). The results show a substantial improvement in light transmittance from 88 % to 93 % for clean roofs, compared to much lower levels for dust-accumulated roofs.
引用
收藏
页数:13
相关论文
共 50 条
[31]   A Solar-powered, Wi-FiRe-programmable Precision Irrigation Controller [J].
Fue, Kadeghe ;
Schueller, John ;
Schumann, Arnold ;
Turnbo, Siza .
2014 PAN AFRICAN CONFERENCE ON SCIENCE, COMPUTING AND TELECOMMUNICATIONS (PACT), 2014, :171-176
[32]   Using a dynamic backbone for efficient data delivery in solar-powered WSNs [J].
Noh, Dong Kun ;
Hur, Junbeom .
JOURNAL OF NETWORK AND COMPUTER APPLICATIONS, 2012, 35 (04) :1277-1284
[33]   Solar-powered open absorption cycle modeling with two desiccant solutions [J].
Aly, Ayman A. ;
Zeidan, El-Shafei B. ;
Hamed, Ahmed M. .
ENERGY CONVERSION AND MANAGEMENT, 2011, 52 (07) :2768-2776
[34]   A solar-powered transmitting video camera for monitoring cliff-nesting raptors [J].
Margalida, A ;
Ecolan, S ;
Boudet, J ;
Bertran, J ;
Martinez, JM ;
Heredia, R .
JOURNAL OF FIELD ORNITHOLOGY, 2006, 77 (01) :7-12
[35]   Lateral-directional stability of near-space solar-powered aircraft [J].
Li F. ;
Ye C. ;
Li G. ;
Zheng A. ;
Fu Y. .
Hangkong Xuebao/Acta Aeronautica et Astronautica Sinica, 2016, 37 (04) :1148-1158
[36]   An Embedded Solar-Powered Irrigation System Based on a Cascaded Fuzzy Logic Controller [J].
Selmani, Abdelouahed ;
Outanoute, Mohamed ;
Oubehar, Hassan ;
Ed-Dahhak, Abdelali ;
Lachhab, Abdeslam ;
Guerbaoui, Mohammed ;
Bouchikhi, Benachir .
ASIAN JOURNAL OF CONTROL, 2019, 21 (04) :1941-1951
[37]   Solar-powered algal production on vegetable processing industry wastewater at pilot scale [J].
Martin-Marroquin, Jesus M. ;
Garrote, Lidia ;
Hidalgo, Dolores ;
Moustakas, Konstantinos ;
Barampouti, Elli Maria ;
Mai, Sofia .
CLEAN TECHNOLOGIES AND ENVIRONMENTAL POLICY, 2024, 26 (05) :1507-1519
[38]   QoS-Aware geographic routing for solar-powered wireless sensor networks [J].
Noh, Donggeon ;
Lee, Dongeun ;
Shin, Heonshik .
IEICE TRANSACTIONS ON COMMUNICATIONS, 2007, E90B (12) :3373-3382
[39]   Solar-powered thermo-pneumatic actuators for passively controlled adaptive shading [J].
Louis, Rafaela ;
Shea, Kristina .
SMART MATERIALS AND STRUCTURES, 2024, 33 (12)
[40]   Efficient Location Service for a Mobile Sink in Solar-Powered Wireless Sensor Networks [J].
Kang, Minjae ;
Yoon, Ikjune ;
Noh, Dong Kun .
SENSORS, 2019, 19 (02)