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    دورية أكاديمية
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    دورية أكاديمية

    المصدر: Ciencia e Ingenieria Neogranadina; Vol. 33 No. 1 (2023); 75-86 ; Ciencia e Ingeniería Neogranadina; Vol. 33 Núm. 1 (2023); 75-86 ; Ciencia e Ingeniería Neogranadina; v. 33 n. 1 (2023); 75-86 ; 1909-7735 ; 0124-8170

    مصطلحات موضوعية: IDS, IPS, Open Source, IoT, Machine Learning

    وصف الملف: application/pdf; text/xml

    العلاقة: https://revistas.unimilitar.edu.co/index.php/rcin/article/view/6534/5496Test; https://revistas.unimilitar.edu.co/index.php/rcin/article/view/6534/5640Test; J. Ruiz et al., "How to Improve the IoT Security Implementing IDS/IPS Tool Using Raspberry Pi 3B+", International Journal of Advanced Computer Science and Applications, vol. 10, n.° 9, The Science and Information Organization, 2019, pp. 399-405, DOI: https://doi.org/10.14569/ijacsa.2019.0100952Test; SAR Shah e I. Biju, "Performance Comparison of Intrusion Detection Systems and Application of Machine Learning to Snort System", Future Generation Computer Systems, vol. 80, Elsevier BV, Mar. 2018, pp. 157-70, DOI: https://doi.org/10.1016/j.future.2017.10.016Test; Q. Hu, Y. Se-Young y MR. Asghar, "Analysing Performance Issues of Open-source Intrusion Detection Systems in High-speed Networks", Journal of Information Security and Applications, vol. 51, Elsevier BV, Apr. 2020, p. 102426, DOI: https://doi.org/10.1016/j.jisa.2019.102426Test; A. Waleed, AF. Jamali y A. Masood. "Which Open-source IDS? Snort, Suricata or Zeek", Computer Networks, vol. 213, Elsevier BV, Aug. 2022, p. 109116, DOI: https://doi.org/10.1016/j.comnet.2022.109116Test; Y. Otoum, D. Liu y A. Nayak, "DL‐IDS: A Deep Learning-based Intrusion Detection Framework for Securing IoT", Transactions on Emerging Telecommunications Technologies, vol. 33, n.° 3, Wiley, Nov. 2019, DOI: https://doi.org/10.1002/ett.3803Test; N. Chaabouni, et al., "Network Intrusion Detection for IoT Security Based on Learning Techniques". IEEE Communications Surveys & Tutorials, vol. 21, n.° 3, Institute of Electrical and Electronics Engineers (IEEE), 2019, pp. 2671-701, DOI: https://doi.org/10.1109/comst.2019.2896380Test; A. P. Patil, et al., "JARVIS: An Intelligent Network Intrusion Detection and Prevention System", 2022 IEEE Fourth International Conference on Advances in Electronics, Computers and Communications (Icaecc), IEEE, Jan. 2022, DOI: https://doi.org/10.1109/icaecc54045.2022.9716622Test; Snort Project, "Snort Users Manual 2.9.16", 2020. [Internet]. Disponible en: https://snortorgsite.s3.amazonaws.com/production/document_files/files/000/000/249/original/snort_manual.pdfTest [Accedido: 19-oct-2022].; J. F. Cañola García, "Sistema preventivo contra ataques de denegación de servicio web utilizando Deep Learning", tesis de maestría, Inst. Tecnol. Metro., Medellín, 2020.; H. Asad y G. Ilir. "Diversity in Open-Source Intrusion Detection Systems". Developments in Language Theory, Cham, Springer International Publishing, 2018, pp. 267-81, DOI: https://doi.org/10.1007/978-3-319-99130-6_18Test; I. Sharafaldin, Iman, A. Habibi Lashkari y A. A. Ghorbani, "Toward Generating a New Intrusion Detection Dataset and Intrusion Traffic Characterization", Proceedings of the 4th International Conference on Information Systems Security and Privacy, Scitepress-Science and Technology Publications, 2018, DOI: https://doi.org/10.5220/0006639801080116Test; T. Zitta, M. Neruda and L. Vojtech, "The Security of RFID Readers With IDS/IPS Solution Using Raspberry Pi", 2017, 18th International Carpathian Control Conference (ICCC), IEEE, May 2017, DOI: https://doi.org/10.1109/carpathiancc.2017.7970418Test; S. A. Raza e I. Biju, "Performance Comparison of Intrusion Detection Systems and Application of Machine Learning to Snort System", Future Generation Computer Systems, vol. 80, Elsevier BV, Mar. 2018, pp. 157-70, DOI: https://doi.org/10.1016/j.future.2017.10.016Test; A. Soucase I, "Implementación de un Sistema de Prevención de Intrusiones (IPS) en un modelo de red industrial", 2021. [Internet]. Disponible en: https://m.riunet.upv.es/handle/10251/178959Test [Accedido: 19-oct-2022].; K. Nam y K. Keecheon, "A Study on SDN Security Enhancement Using Open-Source IDS/IPS Suricata", 2018, International Conference on Information and Communication Technology Convergence (ICTC), IEEE, Oct. 2018, DOI: https://doi.org/10.1109/ictc.2018.8539455Test; J. E. Cruz de la Cruz, C. A. Romero y C. Delgado, "Intrusion Detection and Prevention System for Production Supervision in Small Businesses Based on Raspberry Pi and Snort", 2020, IEEE XXVII International Conference on Electronics, Electrical Engineering and Computing (Intercon), IEEE, Sept. 2020, DOI: https://doi.org/10.1109/intercon50315.2020.9220240Test; I. Ahmad, M. Bascheri y M. J. Iqbal, "Performance Comparison of Support Vector Machine, Random Forest, and Extreme Learning Machine for Intrusion Detection", IEEE Access, vol. 6, Institute of Electrical and Electronics Engineers (IEEE), 2018, pp. 33789-95, DOI: https://doi.org/10.1109/access.2018.2841987Test; R. García, "Las mejores rivales y alternativas a la Raspberry Pi 4", 2022, Accedido el primero de noviembre de 2022. [Internet]. Disponible en: https://www.adslzone.net/listas/gadgets/alternativas-raspberry-piTest/; Elhacker.net, "Instalar y configurar IDS/IPS Suricata en una RaspBerry Pi", 2021, Accedido: primero de noviembre de 2022. [Internet]. Disponible en: https://blog.elhacker.net/2021/02/instalar-configurar-reglas-ids-ips-suricata-en-una-raspberry-pi.htmlTest; Tech LBT, "Configurando Suricata en Pfsense", 2020, Accedido: 4 de octubre de 2022. [Internet]. Disponible en: https://tech.lobobrothers.com/configurando-suricataTest/; Snort, "Rule Subscriptions Power, precision, and flexibility", 2022, Accedido: 13 de octubre de 2022. [Internet]. Disponible en: https://www.snort.org/productsTest; Tech LBT, "Implementando Pfsense con Suricata", 2020, Accedido: 4 de octubre de 2022. [Internet]. Disponible en: https://tech.lobobrothers.com/implementando-pfsense-con-suricataTest/; https://revistas.unimilitar.edu.co/index.php/rcin/article/view/6534Test

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    دورية أكاديمية

    المصدر: Revista Científica; Vol. 46 No. 1 (2023): January-April 2023; 122-133 ; Revista Científica; Vol. 46 Núm. 1 (2023): Enero-Abril 2023; 122-133 ; 2344-8350 ; 0124-2253

    وصف الملف: application/pdf; text/xml

    العلاقة: https://revistas.udistrital.edu.co/index.php/revcie/article/view/19427/18833Test; https://revistas.udistrital.edu.co/index.php/revcie/article/view/19427/19144Test; Aguiar, J. B., Martins, A. M., Almeida, C., Ribeiro, H. M., Marto, J. (2022). Water sustainability: A waterless life cycle for cosmetic products. Sustainable Production and Consumption, 32, 35-51. https://doi.org/10.1016/j.spc.2022.04.008Test; Alvillo-Rivera, A., Garrido-Hoyos, S., Buitrón, G., Thangarasu-Sarasvathi, P., Rosano-Ortega, G. (2021). Biological treatment for the degradation of cyanide: A review. Journal of Materials Research and Technology, 12, 1418-1433. https://doi.org/10.1016/j.jmrt.2021.03.030Test; Amin, M., Lim, L. W., Takeuchi, T. (2008). Determination of common inorganic anions and cations by non-suppressed ion chromatography with column switching. Journal of Chromatography A, 1182(2), 169-175. https://doi.org/10.1016/j.chroma.2008.01.007Test; APHA. (1998). Standard Methods for the Examination of Water and Wastewater. Washington DC: American Public Health Association; Budaev, S. L., Batoeva, A. A., Tsybikova, B. A. (2015). Degradation of thiocyanate in aqueous solution by persulfate activated ferric ion. Minerals Engineering, 81, 88-95. https://doi.org/10.1016/j.mineng.2015.07.010Test; Cacace, D., Ashbaugh, H., Kouri, N., Bledsoe, S., Lancaster, S., Chalk, S. (2007). Spectrophotometric determination of aqueous cyanide using a revised phenolphthalin method. Analytica Chimica Acta, 589(1), 137-141. https://doi.org/10.1016/j.aca.2007.02.004Test; Causse, J., Thomas, O., Jung, A. V., Thomas, M. F. (2017). Direct DOC and nitrate determination in water using dual pathlength and second derivative UV spectrophotometry. Water Research, 108, 312-319. https://doi.org/10.1016/j.watres.2016.11.010Test; Chen, G., Ye, Y., Yao, N., Hu, N., Zhang, J., Huang, Y. (2021). A critical review of prevention, treatment, reuse, and resource recovery from acid mine drainage. Journal of Cleaner Production, 329, e129666. https://doi.org/10.1016/j.jclepro.2021.129666Test; Da Silva, M., Fernandes Sako, A. V., Micke, G. A., Vitali, L. (2020). A rapid method for simultaneous determination of nitrate, nitrite and thiocyanate in milk by CZE-UV using quaternary ammonium chitosan as electroosmotic flow inverter. Journal of Food Composition and Analysis, 88, e103455. https://doi.org/10.1016/j.jfca.2020.103455Test; Destanoğlu, O., Gümüş Yılmaz, G. (2016). Determination of cyanide, thiocyanate, cyanate, hexavalent chromium, and metal cyanide complexes in various mixtures by ion chromatography with conductivity detection. Journal of Liquid Chromatography & Related Technologies, 39(9), 465-474. https://doi.org/10.1080/10826076.2016.1192044Test; Destanoğlu, O., Gümüş Yılmaz, G., Apak, R. (2015). Selective determination of free cyanide in environmental water matrices by ion chromatography with suppressed conductivity detection. Journal of Liquid Chromatography & Related Technologies, 38(16), 1537-1545. https://doi.org/10.1080/10826076.2015.1076460Test; Environment Protection Agency. (2018). Protocol for Review and Validation of New Methods for Regulated Organic and Inorganic Analytes in Wastewater Under EPA’s Alternate Test Procedure Program. Washington, DC: Office of Water, Environmental Protection Agency; Fa, Y., Yu, Y., Li, F., Du, F., Liang, X., Liu, H. (2018). Simultaneous detection of anions and cations in mineral water by two dimensional ion chromatography. Journal of Chromatography A, 1554, 123-127. https://doi.org/10.1016/j.chroma.2018.04.017Test; Gómez-Ordóñez, E., Alonso, E., Rupérez, P. (2010). A simple ion chromatography method for inorganic anion analysis in edible seaweeds. Talanta, 82(4), 1313-1317. https://doi.org/10.1016/j.talanta.2010.06.062Test; Gould, W. D., King, M., Mohapatra, B. R., Cameron, R. A., Kapoor, A., Koren, D. W. (2012). A critical review on destruction of thiocyanate in mining effluents. Minerals Engineering, 34, 38-47. https://doi.org/10.1016/j.mineng.2012.04.009Test; He, X., Mei, Y., Wang, Y., Sun, W., Shen, M. (2019). Determination of inorganic anions in the whole blood by ion chromatography. Journal of Pharmaceutical and Biomedical Analysis, 163, 58-63. https://doi.org/10.1016/j.jpba.2018.09.030Test; Ighalo, J. O., Kurniawan, S. B., Iwuozor, K. O., Aniagor, C. O., Ajala, O. J., Oba, S. N., Iwuchukwu, F. U., Ahmadi, S., Igwegbe, C. A. (2022). A review of treatment technologies for the mitigation of the toxic environmental effects of acid mine drainage (AMD). Process Safety and Environmental Protection, 157, 37-58. https://doi.org/10.1016/j.psep.2021.11.008Test; International Organization for Standardization. (2017). ISO/IEC 17025 - General requirements for the competence of testing and calibration laboratories; Kapinus, E. N., Revelsky, I. A., Ulogov, V. O., Lyalikov, Y. A. (2004). Simultaneous determination of fluoride, chloride, nitrite, bromide, nitrate, phosphate and sulfate in aqueous solutions at 10-9 to 10-8 % level by ion chromatography. Journal of Chromatography B, 800(1-2), 321-323. https://doi.org/10.1016/j.jchromb.2003.09.065Test; Langasco, I., Barracu, F., Deroma, M. A., Lopez-Sanchez, J. F., Mara, A., Meloni, P., Pilo, M. I., Estrugo, A. S., Sanna, G., Spano, N., Spanu, A. (2022). Assessment and validation of ICP-MS and IC-ICP-MS methods for the determination of total, extracted and speciated arsenic. Application to samples from a soil-rice system at varying the irrigation method. Journal of Environmental Management, 302(Pt B), e114105. https://doi.org/10.1016/j.jenvman.2021.114105Test; Lim, H. S., Lee, S. J., Choi, E., Lee, S. B., Nam, H. S., Lee, J. K. (2022). Development and validation of an ionic chromatography method for nitrite determination in processed foods and estimation of daily nitrite intake in Korea. Food Chemistry, 382, e132280. https://doi.org/10.1016/j.foodchem.2022.132280Test; Luque-Almagro, V. M., Moreno-Vivian, C., Roldán, M. D. (2016). Biodegradation of cyanide wastes from mining and jewellery industries. Current Opinion in Biotechnology, 38, 9-13. https://doi.org/10.1016/j.copbio.2015.12.004Test; Mahmud, M. A. P., Ejeian, F., Azadi, S., Myers, M., Pejcic, B., Abbassi, R., Razmjou, A., Asadnia, M. (2020). Recent progress in sensing nitrate, nitrite, phosphate, and ammonium in aquatic environment. Chemosphere, 259, e127492. https://doi.org/10.1016/j.chemosphere.2020.127492Test; Miskaki, P., Lytras, E., Kousouris, L., Tzoumerkas, P. (2007). Data quality in water analysis: Validation of ion chromatographic method for the determination of routine ions in potable water. Desalination, 213(1-3), 182-188. https://doi.org/10.1016/j.desal.2006.05.063Test; Talebi, S. M., Abedi, M. (2005). Determination of atmospheric concentrations of inorganic anions by ion chromatography following ultrasonic extraction. Journal of Chromatography A, 1094(1-2), 118-121. https://doi.org/10.1016/j.chroma.2005.07.118Test; Thangiah, A. S. (2019). Spectrophotometric determination of sulphate and nitrate in drinking water at Asia-Pacific International University Campus, Muak Lek, Thailand. Rasayan Journal of Chemistry, 12(03), 1503-1508; Uzhel, A. S., Zatirakha, A. V., Smolenkov, A. D., Shpigun, O. A. (2018). Quantification of inorganic anions and organic acids in apple and orange juices using novel covalently-bonded hyperbranched anion exchanger with improved selectivity. Journal of Chromatography A, 1567, 130-135. https://doi.org/10.1016/j.chroma.2018.06.065Test; Ye, M., Nesterenko, P. N., Yan, Z., Xie, P., Chen, M. (2019). Determination of inorganic anions in weak acids by using ion exclusion chromatography - Capillary ion chromatography switching column technique. Journal of Chromatography A, 1588, 169-173. https://doi.org/10.1016/j.chroma.2019.01.007Test; Zhou, M., Li, X., Zhang, M., Liu, B., Zhang, Y., Gao, Y., Ullah, H., Peng, L., He, A., Yu, H. (2020). Water quality in a worldwide coal mining city: A scenario in water chemistry and health risks exploration. Journal of Geochemical Exploration, 213, e106513. https://doi.org/10.1016/j.gexplo.2020.106513Test; https://revistas.udistrital.edu.co/index.php/revcie/article/view/19427Test

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