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Event Driven Architecture Approach for Synchronization Real Time NeoFeeder PDDIKTI

*Sopingi Sopingi orcid  -  Universitas Duta Bangsa Surakarta, Indonesia
Sri Sumarlinda  -  Universitas Duta Bangsa Surakarta, Indonesia
Open Access Copyright (c) 2025 Jurnal Sistem Informasi Bisnis

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Abstract
Pangkalan Data Pendidikan Tinggi memiliki peran penting sebagai pusat informasi pendidikan tinggi di Indonesia. NeoFeeder hadir sebagai middleware untuk menjembatani perbedaan sistem informasi akademik antar perguruan tinggi dengan database terpusat PDDIKTI. Implementasi NeoFeeder saat ini masih menggunakan sistem batch atau pemicu manual, yang dapat menyebabkan keterlambatan pembaruan data, terutama jika data besar atau ada perubahan mendadak. Untuk mengatasi hal ini, diperlukan arsitektur sistem yang lebih adaptif, scalable, dan responsif terhadap perubahan data. Penelitian ini bertujuan untuk menghasilkan model integrasi berbasis Event-Driven Architecture yang dapat meningkatkan efisiensi sinkronisasi data antara sistem akademik internal dan NeoFeeder PDDIKTI. Penelitian ini menggunakan pendekatan Rapid Application Development. Hasil penelitian menunjukkan bahwa sistem mampu mengirimkan lebih dari 1.000 data per detik dengan latensi rata-rata 4,05 ms dan response time di bawah 40 ms. Kesimpulannya, pendekatan Event Driven Architecture efektif dalam membantu sinkronisasi data akademik ke NeoFeeder secara real time.

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Keywords: Event Driven, NeoFeeder, Kafka Apache, Sinkronisasi, Waktu Nyata

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  1. Amazon Web Services, I. (n.d.). What is EDA (Event-Driven Architecture)? Retrieved March 15, 2025, from https://aws.amazon.com/what-is/eda/
  2. Apache, K. (n.d.). What is event streaming. Retrieved March 15, 2025, from https://kafka.apache.org/intro
  3. Auliana, S., & Nurasiah, I. (2018). Penerapan Knowledge Management pada Proses Pelaporan Data Perguruan Tinggi (Studi Kasus di STIE Bina Bangsa). Indonesian Journal of Strategic Management, 1(1). https://doi.org/10.25134/ijsm.v1i1.838
  4. Brawijaya -, H., & Widodo -, S. (2023). Implementation of PDDIKTI Neo Feeder Web Service in Recording of Independent Campus Activities. Jurnal Riset Informatika, 5(2). https://doi.org/10.34288/jri.v5i2.210
  5. Bucur, V., Stan, O., & Miclea, L. (2020). An Analysis of the Implementation of Kafka in High-Frequency Electronic Trading Environments. International Journal of Modeling and Optimization, 52–56. https://doi.org/10.7763/IJMO.2020.V10.746
  6. Grudniak, M., & Dzieńkowski, M. (2021). REST API performance comparison of web applications based on JavaScript programming frameworks. Journal of Computer Sciences Institute, 19, 121–125. https://doi.org/10.35784/jcsi.2620
  7. Hesse, G., Matthies, C., & Uflacker, M. (2020). How Fast Can We Insert? An Empirical Performance Evaluation of Apache Kafka. 2020 IEEE 26th International Conference on Parallel and Distributed Systems (ICPADS), 641–648. https://doi.org/10.1109/ICPADS51040.2020.00089
  8. Köstler, J., Reiser, H. P., Habiger, G., & Hauck, F. J. (2021). SmartStream: towards byzantine resilient data streaming. Proceedings of the 36th Annual ACM Symposium on Applied Computing, 213–222. https://doi.org/10.1145/3412841.3441904
  9. Lazzari, L., & Farias, K. (2023). Uncovering the Hidden Potential of Event-Driven Architecture: A Research Agenda
  10. Ornelas, T. (n.d.). Kafkajs, a Modern Apache Kafka Client for Node.Js. Retrieved March 28, 2025, from https://kafka.js.org
  11. Prayogi, A. A., Niswar, M., Indrabayu, & Rijal, M. (2020). Design and Implementation of REST API for Academic Information System. IOP Conference Series: Materials Science and Engineering, 875(1), 012047. https://doi.org/10.1088/1757-899X/875/1/012047
  12. Rafiezah Rizcha, Y., & Yaakub, S. (2023). Sistem Informasi Manajemen Sumber Daya Manusia Pada Universitas Muhammadiyah Jambi. Jurnal Manajemen Sistem Informasi, 8(1), 78–93. https://doi.org/10.33998/jurnalmsi.2023.8.1.765
  13. Solace Corporation. (n.d.). Results from the Industry’s First Event-Driven Architecture Survey. Retrieved March 15, 2025, from https://solace.com/event-driven-architecture-statistics
  14. Sopingi, S., & Wulandari, S. (2023). Integrasi Sistem Pembelajaran dengan Google Classroom melalui Google Apps Script. 6(2), 195–206. https://doi.org/https://doi.org/10.31764/justek.v6i2.15061
  15. Sopingi, Setyowati, R., & Purnomo, S. (2020). Pengembangan Web Service Digital Assessment Test of English for International Communication (TOEIC). Jurnal E-Komtek (Elektro-Komputer-Teknik), 4(1), 75–90. https://doi.org/10.37339/e-komtek.v4i1.232
  16. Ubur, S. D. (2023). Reviewing the Scope and Impact of Implementing a Modernised IT Event-Driven Architecture from Traditional Architecture using Agile Frameworks: A Case study of Bimodal operational strategy
  17. Živanović, S., Popović, M., Vorkapić, N., Pjević, M., & Slavković, N. (2020). An overview of rapid prototyping technologies using subtractive, additive and formative processes. FME Transactions, 48(2), 246–253. https://doi.org/10.5937/fmet2001246Z

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