A Comparative Study of File Transfer Speeds in Broadcast Industry Settings Using FTP and Alternative Network Protocols
DOI:
https://doi.org/10.55606/jupikom.v5i1.6744Keywords:
Broadcast industry; File transfer; FTP;Abstract
Perkembangan kecerdasan buatan (Artificial Intelligence/AI) dalam satu dekade terakhir telah mengubah lanskap dunia pemrograman komputer secara signifikan. Jika sebelumnya pemrograman dipahami sebagai aktivitas teknis yang berfokus pada penulisan kode untuk menyelesaikan masalah komputasional, kini praktik tersebut berkembang menjadi proses kolaboratif antara manusia dan mesin cerdas. Kehadiran model bahasa besar (Large Language Models), sistem generatif, dan otomatisasi berbasis pembelajaran mesin telah menggeser paradigma dari coding manual menuju augmented programming. Artikel ini membahas transformasi dunia pemrograman komputer di era AI dari perspektif historis, teknologis, pedagogis, dan etis. Kajian ini mengeksplorasi bagaimana AI memengaruhi cara programmer bekerja, kompetensi yang dibutuhkan, model pengembangan perangkat lunak, hingga implikasi terhadap pendidikan dan pasar tenaga kerja. Artikel ini berargumen bahwa alih-alih menggantikan programmer, AI berperan sebagai katalis evolusi profesi, mendorong pergeseran dari sekadar penulis kode menjadi perancang sistem cerdas dan pengambil keputusan berbasis algoritmik. Dengan pendekatan analitis dan reflektif, tulisan ini memberikan gambaran komprehensif tentang arah masa depan dunia pemrograman komputer di tengah akselerasi AI global.
References
Arifuzzaman, M., & Arslan, E. (2021). Online optimization of file transfers in high-speed networks. Proceedings of the International Conference for High Performance Computing, Networking, Storage and Analysis. https://doi.org/10.1145/3458817.3476208
Arifuzzaman, M., Bockelman, B., Basney, J., & Arslan, E. (2023). Falcon: Fair and Efficient Online File Transfer Optimization. IEEE Transactions on Parallel and Distributed Systems, 34(8), 2265–2278. https://doi.org/10.1109/TPDS.2023.3282872
Barovih, G. (2023). Analysis of Network Attached Storage Performance with NFS Protocol in Integrated Business Start-Up. 7(3), 1299–1306.
Bi, J., Wang, L., & Guo, G. (2025). 8K Ultra HD TV broadcast system: Challenge, architecture and implementation. Digital Communications and Networks, 11(1), 172–181. https://doi.org/https://doi.org/10.1016/j.dcan.2023.06.001
Borer, T. (2007). Standardising media delivery in a file-based world. November.
Dama, M., Windasari, S., Rotib, A. A., & Frihadi, A. (2025). Single Tone Trigger Implementation for Seamless and Automated Broadcast to Ad Insertion. 5, 116–125.
Gamess, E., & Hester, G. (2025). Using a Raspberry Pi as a Network-Attached Storage Device: Performance and Limitations. Proceedings of the 2025 ACM Southeast Conference, 67–77. https://doi.org/10.1145/3696673.3723073
Gartner, M., Smith, J.-P., Frei, M., Wirz, F., Neukom, C., Hausheer, D., & Perrig, A. (2023). Hercules: High-Speed Bulk-Transfer over SCION. 2023 IFIP Networking Conference (IFIP Networking), 1–9. https://doi.org/10.23919/IFIPNetworking57963.2023.10186366
Gomez-Barquero, D., Gimenez, J. J., Muntean, G.-M., Xu, Y., & Wu, Y. (2022). IEEE Transactions on Broadcasting Special Issue on: 5G Media Production, Contribution, and Distribution. IEEE Transactions on Broadcasting, 68(2), 415–421. https://doi.org/10.1109/TBC.2022.3163818
Ibrahim, R. A., Hidayana, R. A., & Saefullah, R. (2024). Broadcasting Adaptation in the Streaming Era : Industrial Transformation in the Digital Revolution. 2(2), 53–59.
Kawamoto, J., & Kurakake, T. (2021). Diagonal XOR-Based FEC Method to Improve Burst-Loss Tolerance for 4K/8K UHDTV Transmission. IEEE Transactions on Circuits and Systems for Video Technology, 31(5), 1983–1994. https://doi.org/10.1109/TCSVT.2020.3014924
Kempf, M., Jaeger, B., Zirngibl, J., Ploch, K., & Carle, G. (2024). QUIC on the Fast Lane: Extending Performance Evaluations on High-rate Links. Computer Communications, 223, 90–100. https://doi.org/https://doi.org/10.1016/j.comcom.2024.04.038
Kim, S., Shin, S., & Moon, J. (2022). UDP-based Extremely Low Latency Streaming. 2022 IEEE 19th Annual Consumer Communications & Networking Conference (CCNC), 94–99. https://doi.org/10.1109/CCNC49033.2022.9700635
Kurniawan, A. A. (2024). Implementasi nas server menggunakan stb openwrt di balai desa gedungan sumenep ,. 3.
Kurose, J. F. ., & Ross, K. W. . (2010). Computer networking : a top-down approach. 862.
Makalesi, D.-P. T. broadcasting is, & Article, R. (2022). YENİ MEDYADA TELEVİZYON TEKNİĞİ.
Michel, F., Cohen, A., Malak, D., De Coninck, Q., Médard, M., & Bonaventure, O. (2023). FlEC: Enhancing QUIC With Application-Tailored Reliability Mechanisms. IEEE/ACM Transactions on Networking, 31(2), 606–619. https://doi.org/10.1109/TNET.2022.3195611
Mitrović, O., & Tadić, V. (2025). SMB Over QUIC: A Performance Evaluation. 2025 MIPRO 48th ICT and Electronics Convention, 919–924. https://doi.org/10.1109/MIPRO65660.2025.11132048
Nazarov, N., & Arslan, E. (2022). In-Network Caching Assisted Error Recovery For File Transfers. 2022 IEEE/ACM International Workshop on Innovating the Network for Data-Intensive Science (INDIS), 20–24. https://doi.org/10.1109/INDIS56561.2022.00008
Salke, P., Chavan, P., Sangrulkar, O., & Motade, S. N. (2023). Analyzing the Feasibiity and Realibilty of Nextcloud as a Network Attached Cloud Storage Solution on Raspberry Pi. 2023 International Conference on Integrated Intelligence and Communication Systems (ICIICS), 1–4. https://doi.org/10.1109/ICIICS59993.2023.10421037
Server, W. (2025). Análise comparativa de desempenho dos sistemas de arquivos NFS e SMB / CIFS integrados ao DFS do windows server. 7.
Sharma, U., Malviya, A., & Shree, R. (2024). Exploring The Role of Edge Computing In Optimizing Broadcast Technologies. 2024 IEEE 13th International Conference on Communication Systems and Network Technologies (CSNT), 117–126. https://doi.org/10.1109/CSNT60213.2024.10546077
Smb, B. N. F. S., & Singh, P. (2025). Workload-Driven Perspectives on Networked Filesystems : 3(4), 975–981. https://doi.org/10.61359/11.2206-2553
Taha, M., & Ali, A. (2023). applied sciences Redirection and Protocol Mechanisms in Content Delivery Network-Edge Servers for Adaptive Video Streaming.
Um, T. V, & Dtv, C. (n.d.). TV 3.0: Um Estudo sobre Core DTV+ na Nuvem. 276–281.
Yang, S. (n.d.). Advancements in Network Attached Storage ( NAS ) for Mobile Devices : Technological Developments and Performance Assessment Abstract : 1–7.
Yunhong Gu. (n.d.).
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