Implementasi Teknologi Web Geospasial dan Decision Tree untuk Klasifikasi Sebaran Pengumpulan Zakat
DOI:
https://doi.org/10.30865/mib.v8i1.7027Keywords:
Classification, Geographic Information System, Data Report, Zakat CollectionAbstract
As one of the five pillars of Islam, zakat significantly contributes to socio-economic development and growth in a region. Zakat collection in the city of Madiun has various challenges, including the motivation of muzakki as zakat payers. Zakat is an obligation for someone with assets or income exceeding basic needs to fulfill their living needs. One way to increase motivation to pay zakat is using geospatial web technology to map muzakki in the city of Madiun. Muzakki report data, which previously had the form of a graphic diagram, was changed to a more interactive geospatial form. Several essential advantages in its implementation include embedding precise coordinate points to facilitate the geospatial-based monitoring process, important notes and information about muzakki, and the classification of zakat collection, including collecting zakat in high, medium, and low amounts. This method can represent muzakki mapping more easily and clearly so that zakat institutions (BAZNAS) can quickly determine their policies to increase zakat collection.References
[1] S. Idris, N. Musa, and W. Pembengo, “Produksi Tanaman Mentimun (Cucumis sativus L.) Akibat Pemangkasan Dan Jumlah Benih Per Lubang Tanam,” Jatt, vol. 7, no. 2, pp. 229-235 ISSN 2252-3774, 2018, [Online]. Available: https://repository.ung.ac.id/skripsi/show/613411010/produksi-tanaman-mentimun-cucumis-sativus-l-akibat- pemangkasan-dan-jumlah-benih-per-lubang-tanam.html
[2] A. Sihaloho, R. Purba, and D. E. Siregar, “PENGARUH PUPUK BIOORGANIK DAN DOSIS PUPUK NPK
MUTIARATERHADAP PERTUMBUHAN DAN PRODUKSI TANAMAN MENTIMUN (Cucumis sativus L.),” J. Rhizobia, vol. 8, no. 1, pp. 32–41, 2020, doi: 10.36985/rhizobia.v8i1.70.
[3] R. Zikria and A. Damayanti, “Peran Penyuluhan Pertanian dan Preferensi Risiko terhadap Penggunaan Pupuk Berlebih
pada Usaha Tani Padi,” J. Agro Ekon., vol. 37, no. 1, p. 79, 2019, doi: 10.21082/jae.v37n1.2019.79-94.
[4] R. G. Wisduanto, A. Bhawiyuga, and D. P. Kartikasari, “Implementasi Sistem Akuisisi Data Sensor Pertanian
Menggunakan Protokol Komunikasi Lora,” J. Pengemb. Teknol. Inf. dan Ilmu Komput., vol. 3, no. 3, pp. 2201–2207,
2019.
[5] A. Sharma, P. K. Singh, and Y. Kumar, “An integrated fire detection system using IoT and image processing technique
for smart cities,” Sustain. Cities Soc., vol. 61, p. 102332, 2020, doi: 10.1016/j.scs.2020.102332.
[6] S. Pamungkas, “Smart Greenhouse System On Paprican Plants Based On Internet of Things,” Telekontran J. Ilm.
Telekomun. Kendali dan Elektron. Terap., vol. 7, no. 2, pp. 197–207, 2020, doi: 10.34010/telekontran.v7i2.2277.
[7] A. Nazarudin, M. Mahdiannoor, and Z. Zarmiyeni, “Pertumbuhan dan Produksi Tanaman Mentimun terhadap Pemberian
Berbagai Takaran Vermikompos pada Tanah Podsolik Merah Kuning,” Rawa Sains J. Sains Stiper Amuntai, vol. 9, no.
1, pp. 705–714, 2019, doi: 10.36589/rs.v9i1.95.
[8] A. F. Zulkarnain, E. S. Wijaya, and N. F. Mustamin, “Penerapan Teknologi Smart Farming Berbasis Internet of Things
Bagi Masyarakat Petani Jeruk Siam,” Batara Wisnu Indones. J. Community Serv., vol. 2, no. 1, pp. 50–59, 2022, doi:
10.53363/bw.v2i1.47.
[9] A. Tzounis, N. Katsoulas, T. Bartzanas, and C. Kittas, “Internet of Things in agriculture, recent advances and future challenges,” Biosyst. Eng., vol. 164, no. December, pp. 31–48, 2017, doi: 10.1016/j.biosystemseng.2017.09.007.
[10] Q. Wen and Q. Chen, “The application of Internet of things technology in pharmaceutical cold chain logistics,” WIT
Trans. Inf. Commun. Technol., vol. 61, no. 7, pp. 617–624, 2014, doi: 10.2495/MIIT130791.
[11] L. Jiang, L. Da Xu, H. Cai, Z. Jiang, F. Bu, and B. Xu, “An IoT-Oriented data storage framework in cloud computing
platform,” IEEE Trans. Ind. Informatics, vol. 10, no. 2, pp. 1443–1451, 2014, doi: 10.1109/TII.2014.2306384.
[12] H. S. Nida, M. Faiqurahman, and Z. Sari, “Prototype Sistem Multi-Telemetri Wireless Untuk Mengukur Suhu Udara
Berbasis Mikrokontroler ESP8266 Pada Greenhouse,” Kinet. Game Technol. Inf. Syst. Comput. Network, Comput. Electron. Control, vol. 2, no. 3, pp. 217–226, 2017, doi: 10.22219/kinetik.v2i3.89.
[13] I. Kuzminykh, A. Snihurov, and A. Carlsson, “Testing of communication range in ZigBee technology,” 2017 14th Int.
Conf. Exp. Des. Appl. CAD Syst. Microelectron. CADSM 2017 - Proc., pp. 133–136, 2017, doi:
10.1109/CADSM.2017.7916102.
[14] A. Arora and A. Grover, “ZigBee: Simulation and Investigation of Star and Mesh Topology by Varying Channel Sensing
Duration,” Int. J. Comput. Appl., vol. 67, no. 9, pp. 44–50, 2013, doi: 10.5120/11425-6771.
[15] M. L. Liya and M. Aswathy, “LoRa technology for Internet of Things(IoT): A brief Survey,” Proc. 4th Int. Conf. IoT
Soc. Mobile, Anal. Cloud, ISMAC 2020, pp. 128–133, 2020, doi: 10.1109/I-SMAC49090.2020.9243449.
[16] A. Bhardwaj, K. Kaushik, S. Bharany, M. F. Elnaggar, M. I. Mossad, and S. Kamel, “Comparison of IoT Communication
Protocols Using Anomaly Detection with Security Assessments of Smart Devices,” Processes, vol. 10, no. 10, 2022, doi:
10.3390/pr10101952.
[17] V. Sarafov and J. Seeger, “Comparison of IoT Data Protocol Overhead,” Semin. Futur. Internet SS2017, Dep.
Informatics, Tech. Univ. Munich, no. March, pp. 7–14, 2018, doi: 10.2313/NET-2018-03-1. [18] A. Wardhana et al., Arsitektur dan standarisasi internet of things (iot), no. May. 2023.
[19] G. Santoso, S. Hani, and U. D. Putra, “Monitoring kualitas tanah lahan pertanian Desa Sidorejo menggunakan sensor pH
tanah dan Internet of Things,” J. Nusant. Mengabdi, vol. 2, no. 1, pp. 1–10, 2022, doi: 10.35912/jnm.v2i1.1387.
[20] R. Daniel, “Rancang Bangun Alat Monitoring Kelembaban, PH Tanah dan Pompa Otomatis Berbasis Arduino,” J. Appl.
Comput. Sci. Technol., vol. 3, no. 2, pp. 208–212, 2022, doi: 10.52158/jacost.v3i2.384.
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