Urgency of Regulating Victims’ Economic Rights in Fictitious Credit Cases Based on Misuse of Personal Data
Downloads
Background. The rapid development of information technology has led to an increase in fictitious credit cases involving the misuse of personal data. Victims often experience significant economic losses, including damaged credit reputation and financial hardship. While Indonesia has implemented the Personal Data Protection Law and the Witness and Victim Protection Law, these regulations lack specific provisions for addressing economic losses caused by such crimes.
Purpose. This study aims to explore the urgency of regulating victims’ economic rights in fictitious credit cases involving personal data misuse. It also seeks to identify the gaps in existing legal frameworks and propose new measures to address these issues effectively.
Method. The study employs a qualitative approach by analyzing existing laws, regulations, and case studies related to personal data misuse in Indonesia. It highlights the inadequacy of current policies and emphasizes the necessity for legal reform.
Results. The findings reveal a significant legal vacuum in protecting victims’ economic rights, including compensation, restitution, and credit reputation restoration. The study underscores the need for comprehensive regulations to ensure justice and economic recovery for victims, as well as improved oversight of personal data management and law enforcement.
Conclusion. To protect victims’ economic rights, Indonesia must develop specific regulations addressing fictitious credit cases. Enhancing legal frameworks and strengthening enforcement mechanisms are essential to mitigate the impact of personal data misuse in banking transactions.
Ajeeshkumar, K. K., Aneesh, P. A., Raju, N., Suseela, M., Ravishankar, C. N., & Benjakul, S. (2021). Advancements in liposome technology: Preparation techniques and applications in food, functional foods, and bioactive delivery: A review. Comprehensive Reviews in Food Science and Food Safety, 20(2), 1280–1306. https://doi.org/10.1111/1541-4337.12725
Ajmal, Z., Haq, M. U., Naciri, Y., Djellabi, R., Hassan, N., Zaman, S., Murtaza, A., Kumar, A., Al-Sehemi, A. G., Algarni, H., Al-Hartomy, O. A., Dong, R., Hayat, A., & Qadeer, A. (2022). Recent advancement in conjugated polymers based photocatalytic technology for air pollutants abatement: Cases of CO2, NOx, and VOCs. Chemosphere, 308, 136358. https://doi.org/10.1016/j.chemosphere.2022.136358
Alamiery, A. (2023). Advancements in materials for hydrogen production: A review of cutting-edge technologies. ChemPhysMater, S2772571523000475. https://doi.org/10.1016/j.chphma.2023.09.002
Amalina, F., Krishnan, S., Zularisam, A. W., & Nasrullah, M. (2023). Recent advancement and applications of biochar technology as a multifunctional component towards sustainable environment. Environmental Development, 46, 100819. https://doi.org/10.1016/j.envdev.2023.100819
Asim, T., Islam, S., Hemmati, A., & Khalid, M. (2022). A Review of Recent Advancements in Offshore Wind Turbine Technology. Energies, 15(2), 579. https://doi.org/10.3390/en15020579
Buonomano, A., Barone, G., & Forzano, C. (2023). Latest advancements and challenges of technologies and methods for accelerating the sustainable energy transition. Energy Reports, 9, 3343–3355. https://doi.org/10.1016/j.egyr.2023.02.015
Busby, S. A., Carbonneau, S., Concannon, J., Dumelin, C. E., Lee, Y., Numao, S., Renaud, N., Smith, T. M., & Auld, D. S. (2020). Advancements in Assay Technologies and Strategies to Enable Drug Discovery. ACS Chemical Biology, 15(10), 2636–2648. https://doi.org/10.1021/acschembio.0c00495
Campelo, S. N., Huang, P.-H., Buie, C. R., & Davalos, R. V. (2023). Recent Advancements in Electroporation Technologies: From Bench to Clinic. Annual Review of Biomedical Engineering, 25(1), 77–100. https://doi.org/10.1146/annurev-bioeng-110220-023800
Chauhan, R., Sartape, R., Minocha, N., Goyal, I., & Singh, M. R. (2023). Advancements in Environmentally Sustainable Technologies for Ethylene Production. Energy & Fuels, 37(17), 12589–12622. https://doi.org/10.1021/acs.energyfuels.3c01777
Cheng, H.-H., Narindri, B., Chu, H., & Whang, L.-M. (2020). Recent advancement on biological technologies and strategies for resource recovery from swine wastewater. Bioresource Technology, 303, 122861. https://doi.org/10.1016/j.biortech.2020.122861
Cheng, H.-H., & Whang, L.-M. (2022). Resource recovery from lignocellulosic wastes via biological technologies: Advancements and prospects. Bioresource Technology, 343, 126097. https://doi.org/10.1016/j.biortech.2021.126097
Chiong, M.-C., Chong, C. T., Ng, J.-H., Mashruk, S., Chong, W. W. F., Samiran, N. A., Mong, G. R., & Valera-Medina, A. (2021). Advancements of combustion technologies in the ammonia-fuelled engines. Energy Conversion and Management, 244, 114460. https://doi.org/10.1016/j.enconman.2021.114460
Dalal, N., Jalandra, R., Sharma, M., Prakash, H., Makharia, G. K., Solanki, P. R., Singh, R., & Kumar, A. (2020). Omics technologies for improved diagnosis and treatment of colorectal cancer: Technical advancement and major perspectives. Biomedicine & Pharmacotherapy, 131, 110648. https://doi.org/10.1016/j.biopha.2020.110648
De Corato, U. (2020). Improving the shelf-life and quality of fresh and minimally-processed fruits and vegetables for a modern food industry: A comprehensive critical review from the traditional technologies into the most promising advancements. Critical Reviews in Food Science and Nutrition, 60(6), 940–975. https://doi.org/10.1080/10408398.2018.1553025
Devda, V., Chaudhary, K., Varjani, S., Pathak, B., Patel, A. K., Singhania, R. R., Taherzadeh, M. J., Ngo, H. H., Wong, J. W. C., Guo, W., & Chaturvedi, P. (2021). Recovery of resources from industrial wastewater employing electrochemical technologies: Status, advancements and perspectives. Bioengineered, 12(1), 4697–4718. https://doi.org/10.1080/21655979.2021.1946631
Filipczak, N., Pan, J., Yalamarty, S. S. K., & Torchilin, V. P. (2020). Recent advancements in liposome technology. Advanced Drug Delivery Reviews, 156, 4–22. https://doi.org/10.1016/j.addr.2020.06.022
Gradl, P. R., & Protz, C. S. (2020). Technology advancements for channel wall nozzle manufacturing in liquid rocket engines. Acta Astronautica, 174, 148–158. https://doi.org/10.1016/j.actaastro.2020.04.067
Gupta, J., Gupta, R., & Vanshita. (2021). Microneedle Technology: An Insight into Recent Advancements and Future Trends in Drug and Vaccine Delivery. ASSAY and Drug Development Technologies, 19(2), 97–114. https://doi.org/10.1089/adt.2020.1022
Hossain, M. S., Kumar, L., El Haj Assad, M., & Alayi, R. (2022). Advancements and Future Prospects of Electric Vehicle Technologies: A Comprehensive Review. Complexity, 2022(1), 3304796. https://doi.org/10.1155/2022/3304796
Hussain, K., Khan, N. A., Vambol, V., Vambol, S., Yeremenko, S., & Sydorenko, V. (2022). Advancement in Ozone base wastewater treatment technologies: Brief review. Ecological Questions, 33(2), 1–23. https://doi.org/10.12775/EQ.2022.010
Kalaj, M., & Cohen, S. M. (2020). Postsynthetic Modification: An Enabling Technology for the Advancement of Metal–Organic Frameworks. ACS Central Science, 6(7), 1046–1057. https://doi.org/10.1021/acscentsci.0c00690
Karmakar, A., & Li, J. (2022). Luminescent MOFs (LMOFs): Recent advancement towards a greener WLED technology. Chemical Communications, 58(77), 10768–10788. https://doi.org/10.1039/D2CC03330E
Kaun, A., & Stiernstedt, F. (2022). Prison Tech: Imagining the Prison as Lagging Behind and as a Test Bed for Technology Advancement. Communication, Culture and Critique, 15(1), 69–83. https://doi.org/10.1093/ccc/tcab032
Kim, S., Tanim, T. R., Dufek, E. J., Scoffield, D., Pennington, T. D., Gering, K. L., Colclasure, A. M., Mai, W., Meintz, A., & Bennett, J. (2022). Projecting Recent Advancements in Battery Technology to Next?Generation Electric Vehicles. Energy Technology, 10(8), 2200303. https://doi.org/10.1002/ente.202200303
Lee, T.-Y., Chen, L.-Y., Lo, Y.-Y., Swayamprabha, S. S., Kumar, A., Huang, Y.-M., Chen, S.-C., Zan, H.-W., Chen, F.-C., Horng, R.-H., & Kuo, H.-C. (2022). Technology and Applications of Micro-LEDs: Their Characteristics, Fabrication, Advancement, and Challenges. ACS Photonics, 9(9), 2905–2930. https://doi.org/10.1021/acsphotonics.2c00285
Liu, T., Liu, L., Gou, G., Fang, Z., Sun, J., Chen, J., Cheng, J., Han, M., Ma, T., Liu, C., & Xue, N. (2023). Recent Advancements in Physiological, Biochemical, and Multimodal Sensors Based on Flexible Substrates: Strategies, Technologies, and Integrations. ACS Applied Materials & Interfaces, 15(18), 21721–21745. https://doi.org/10.1021/acsami.3c02690
Machín, A., Morant, C., & Márquez, F. (2024). Advancements and Challenges in Solid-State Battery Technology: An In-Depth Review of Solid Electrolytes and Anode Innovations. Batteries, 10(1), 29. https://doi.org/10.3390/batteries10010029
Majeed Butt, O., Zulqarnain, M., & Majeed Butt, T. (2021). Recent advancement in smart grid technology: Future prospects in the electrical power network. Ain Shams Engineering Journal, 12(1), 687–695. https://doi.org/10.1016/j.asej.2020.05.004
Mallakpour, S., Tukhani, M., & Hussain, C. M. (2021). Recent advancements in 3D bioprinting technology of carboxymethyl cellulose-based hydrogels: Utilization in tissue engineering. Advances in Colloid and Interface Science, 292, 102415. https://doi.org/10.1016/j.cis.2021.102415
Pang, P., Lai, Y., Zhang, Y., Wang, H., Conlan, X. A., Barrow, C. J., & Yang, W. (2020). Recent Advancement of Biosensor Technology for the Detection of Microcystin-LR. Bulletin of the Chemical Society of Japan, 93(5), 637–646. https://doi.org/10.1246/bcsj.20190365
Qu, J.-H., Dillen, A., Saeys, W., Lammertyn, J., & Spasic, D. (2020). Advancements in SPR biosensing technology: An overview of recent trends in smart layers design, multiplexing concepts, continuous monitoring and in vivo sensing. Analytica Chimica Acta, 1104, 10–27. https://doi.org/10.1016/j.aca.2019.12.067
Rasheed, A., Gill, R. A., Hassan, M. U., Mahmood, A., Qari, S., Zaman, Q. U., Ilyas, M., Aamer, M., Batool, M., Li, H., & Wu, Z. (2021). A Critical Review: Recent Advancements in the Use of CRISPR/Cas9 Technology to Enhance Crops and Alleviate Global Food Crises. Current Issues in Molecular Biology, 43(3), 1950–1976. https://doi.org/10.3390/cimb43030135
Reshmy, R., Philip, E., Sirohi, R., Tarafdar, A., Arun, K. B., Madhavan, A., Binod, P., Kumar Awasthi, M., Varjani, S., Szakacs, G., & Sindhu, R. (2021). Nanobiocatalysts: Advancements and applications in enzyme technology. Bioresource Technology, 337, 125491. https://doi.org/10.1016/j.biortech.2021.125491
Satam, H., Joshi, K., Mangrolia, U., Waghoo, S., Zaidi, G., Rawool, S., Thakare, R. P., Banday, S., Mishra, A. K., Das, G., & Malonia, S. K. (2023). Next-Generation Sequencing Technology: Current Trends and Advancements. Biology, 12(7), 997. https://doi.org/10.3390/biology12070997
Selema, A., Ibrahim, M. N., & Sergeant, P. (2022). Metal Additive Manufacturing for Electrical Machines: Technology Review and Latest Advancements. Energies, 15(3), 1076. https://doi.org/10.3390/en15031076
Shihab, M. A., Aswad, S. A., Othman, R. N., & Ahmed, S. R. (2023). Advancements and Challenges in Networking Technologies: A Comprehensive Survey. 2023 7th International Symposium on Multidisciplinary Studies and Innovative Technologies (ISMSIT), 1–5. https://doi.org/10.1109/ISMSIT58785.2023.10304990
Vijayan, D. S., Koda, E., Sivasuriyan, A., Winkler, J., Devarajan, P., Kumar, R. S., Jakimiuk, A., Osinski, P., Podlasek, A., & Vaverková, M. D. (2023). Advancements in Solar Panel Technology in Civil Engineering for Revolutionizing Renewable Energy Solutions—A Review. Energies, 16(18), 6579. https://doi.org/10.3390/en16186579
Xie, Q.-Z., Lin, M.-W., Hsu, W.-E., & Lin, C.-T. (2020). Review—Advancements of Nanoscale Structures and Materials in Impedimetric Biosensing Technologies. ECS Journal of Solid State Science and Technology, 9(11), 115027. https://doi.org/10.1149/2162-8777/abbcb3
Copyright (c) 2024 Hanif Fonda, Faisal Santiago

This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.