Academic literature on the topic 'Nagios'

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Journal articles on the topic "Nagios"

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Ayu, Christine, and Henry Saptono. "Perancangan dan implementasi network monitoring system berbasis nagios dengan dukungan notifikasi dan pemantauan menggunakan telegram bot." Jurnal Informatika Terpadu 4, no. 1 (March 14, 2018): 07–18. http://dx.doi.org/10.54914/jit.v4i1.133.

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Andreatos, Antonios ,., and Nikolaos Chatzipantou. "Using Nagios on a Raspberry Pi to Monitor Anetwork with Emphasis on Security." WSEAS TRANSACTIONS ON COMPUTERS 19 (January 29, 2021): 262–67. http://dx.doi.org/10.37394/23205.2020.19.31.

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The objective of this paper is to present an advanceduse of Nagios on Raspberry Pi to monitor a network. RaspberryPi is a tiny, low-cost yet powerful computer board with manyapplications. Network monitoring systems constantly monitor acomputer network for malfunctions and failures of servers andnotifies the network administrator in case of trouble. In ourcase, the free version of Nagios installed on a Raspberry Pi hasbeen used to monitor a network at minimal cost. Furthermore,two bash scripts automating the complex process of Nagiosinstallation on Raspberry Pi, as well as Linux host have beendeveloped. In order to elevate the security level of Networkmonitoring we have proposed a triple set of Raspberry Pi Nagiosservers, each one monitoring hosts and servers including theother two Nagios servers (triple modular redundancy). Finally,custom scripts providing useful information about monitoredhosts, such as their operating system, hardware and networking,as well as a special script examining and rating the security levelof Apache web servers, have been developed and incorporatedinto the network monitoring process.
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Fornaroli, Gabriele Karoline, and Renato dos Santos Alves. "NAGIOS – MONITORANDO A SAÚDE DE SERVIÇOS, SISTEMAS E DISPOSITIVOS DE REDE." Revista Interface Tecnológica 18, no. 1 (November 3, 2021): 68–79. http://dx.doi.org/10.31510/infa.v18i1.1112.

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Monitorar serviços e dispositivos de rede é altamente significativo e importante em uma organização, é ele que vai informar onde e porque um serviço não realiza sua função de forma mais adequada e eficaz. O presente estudo tem por objetivo implementar a ferramenta Nagios para fornecer um melhor controle e monitorar a saúde dos serviços, assim como analisar seu desempenho. Tem como metodologia o levantamento de dados a partir de artigos científicos, livros e revistas. Como resultados esperados e dando importância à opinião de um especialista que faz uso da ferramenta, esperamos que o Nagios tenha um desempenho considerável com seu monitoramento e realmente seja qualificado para ser implementado em empresas de grande, médio ou pequeno porte. O Nagios é uma ferramenta flexível e que tornou-se um grande aliado dos administradores, pois sendo o monitoramento de redes cada vez mais importante, o mesmo acabou tomando um lugar significativo no mercado de trabalho.
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Fikri, Muhammad Huri, and Ida Nurhaida. "PEMANTAUAN JARINGAN MENGGUNAKAN NAGIOS DAN ZABBIX DENGAN NOTIFIKASI TELEGRAM MESSENGER DAN GOOGLE MAIL." Simetris: Jurnal Teknik Mesin, Elektro dan Ilmu Komputer 11, no. 2 (October 31, 2021): 578–93. http://dx.doi.org/10.24176/simet.v11i2.5320.

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Penggunaan Nagios dan Zabbix sebagai alat untuk mendeteksi dan mengirimkan notifikasi peringatan apabila terdapat suatu device atau host yang mati secara tiba-tiba (down). Objek pemantauan dari penelitian ini adalah IP kamera CCTV (Internet Protocol Closed Circuit Television) dan server kamera (Host Windows) yang mengelola IP kamera tersebut. Kegagalan sistem ini dapat disebabkan karena pemadaman listrik. Hal ini menyebabkan matinya seluruh perangkat jaringan (network device). Maka dari itu perlu sebuah notifikasi secara real time apabila salah satu dari kamera atau server kamera mengalami kegagalan sistem. Penelitian ini menggunakan metodologi Network Development Life Cycle (NDLC). Dalam penelitian ini dapat disimpulkan bahwa penggunaan aplikasi Telegram dan Gmail bisa digunakan sebagai alat untuk mendapatkan notifikasi di perangkat telepon pintar. Pengiriman notifikasi dari aplikasi Nagios akan langsung dikirimkan (tanpa penundaan pengiriman) ke Telegram dan Gmail setelah terdeteksi status down / up sedangkan aplikasi Zabbix mengalami penundaan. Tetapi aplikasi Zabbix dapat medeteksi lebih cepat daripada aplikasi Nagios untuk pantauan Host Windows dan IP Kamera.
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Saputra, Debi Onas, and Henry Saptono. "INTEGRASI NETWORK MONITORING SYSTEM BEBRBASIS NAGIOS DENGAN TICKETING SYSTEM BERBASIS OS TICKET." Jurnal Informatika Terpadu 5, no. 1 (March 20, 2019): 06–17. http://dx.doi.org/10.54914/jit.v5i1.171.

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Fahreza, Fahreza, and Muhammad Rifqi. "Nagios Core Optimization by Utilizing Telegram as Notification of Disturbance." IJTI (International Journal of Transportation and Infrastructure) 3, no. 2 (July 15, 2020): 130–46. http://dx.doi.org/10.29138/ijti.v3i2.1064.

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Network Monitoring System (NMS) is a system that is highly demanded internet service provider industry in this fast-developing information technology era. The availability of NMS is the best option to restore the service level agreement as a means to compete with other internet service providers’ competitors. The occurrence of disturbance in the network is often unnoticed by the network administrator. This may lead to a crucial problem in decreasing network quality as the impact of time-consuming in solving the problem. Through the explanation, the writer tried to anticipate by classifying problems using Pareto, and integrated Nagios with Telegram Messenger as a notification of disturbance. Nagios has many features such as reports, event handler, monitoring resource (CPU load, memory usage, status up / down, up time, data traffic, bandwidth), etc. One of notable feature owned by Nagios is blast notification of disturbance. It is a feature that will function when one of the devices is in trouble. This feature will inform the network administrator or authorized person in a certain divisions as regards the error network. In this case, the problematic device can be categorized according to the parameters made by the network administrator.
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Fahreza, Fahreza, and Muhammad Rifqi. "Nagios Core Optimization By Utilizing Telegram as Notification of Disturbance." Journal of Applied Science, Engineering, Technology, and Education 2, no. 2 (June 7, 2020): 121–35. http://dx.doi.org/10.35877/454ri.asci2259.

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Network Monitoring System (NMS) is a system that is highly demanded internet service provider industry in this fast-developing information technology era. The availability of NMS is the best option to restore the service level agreement as a means to compete with other internet service providers’ competitors. The occurrence of disturbance in the network is often unnoticed by the network administrator. This may lead to a crucial problem in decreasing network quality as the impact of time-consuming in solving the problem. Through the explanation, the writer tried to anticipate by classifying problems using Pareto and integrated Nagios with Telegram Messenger as a notification of disturbance. Nagios has many features such as reports, event handlers, monitoring resources (CPU load, memory usage, status up / down, uptime, data traffic, bandwidth), etc. One notable feature owned by Nagios is blast notification of disturbance. It is a feature that will function when one of the devices is in trouble. This feature will inform the network administrator or authorized person in certain divisions as regards the error network. In this case, the problematic device can be categorized according to the parameters made by the network administrator.
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Fernández, V., A. Pazos, J. Saborido, and M. Seco. "Arduino and Nagios integration for monitoring." Journal of Physics: Conference Series 513, no. 6 (June 11, 2014): 062015. http://dx.doi.org/10.1088/1742-6596/513/6/062015.

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Simanjuntak, Rantika Tri Septyani, Parma Hadi Rantelinggi, and Kristia Yuliawan. "Metode Drive Test sebagai Monitoring Unjuk Kerja Jaringan Nirkabel pada Gedung - Gedung di Lingkungan Universitas Papua." Jurnal Teknologi Informasi dan Ilmu Komputer 7, no. 6 (December 2, 2020): 1245. http://dx.doi.org/10.25126/jtiik.2020762898.

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<p>Universitas Papua telah memberikan layanan internet yang di bagikan pada setiap gedung fakultas dengan Wi-Fi sebagai media berbagi, dalam penelitian ini kegiatan yang dilakukan yaitu mengamati dan menganalisis kualitas jaringan Wi-Fi yang telah tersedia. Dalam penelitian ini cara melakukan pengukuran kualitas jaringan nirkabel ini menggunakan metode Drive Test, dimana metode ini mengukur secara manual dan menghimpun data secara waktu nyata menggunakan beberapa parameter antara lain <em>Bandwidth, Delay</em> dan <em>Packet Loss</em>. Dalam penelitian ini pengumpulan data dengan menggunakan dua aplikasi jaringan yaitu Nagios XI dan Wireshark. Untuk melihat kualitas jaringan dari hasil percobaan yang dilakukan maka digunakan standar TIPHON. Hasil perolehan pengukuran yang di dapat adalah kualitas pemakaian <em>Bandwidth</em> sudah baik, karena tidak melebihi kapasitas yang telah di alokasikan pada setiap gedung di Universitas Papua dan dapat dilihat dari nilai rata-rata <em>Delay </em>dan <em>Packet Loss</em> pada setiap gedung. Hasil pengujian kualitas layanan jaringan Wi-Fi menunjukkan indeks nilai pada standar TIPHON adalah 4, yang artinya sangat bagus. Karena pengujian <em>Delay</em> nilai tertinggi yang di peroleh bila di ukur dengan Nagios XI adalah 76 ms dan terendah adalah 21,8 ms, untuk pengukuran menggunakan Wireshark nilai tertinggi adalah 72,4 ms dan terendah adalah 10 ms. Untuk <em>Packet Loss </em>hasil yang diperoleh yaitu 0%<em> </em>bila di ukur dengan Nagios XI dan Wireshark.</p><p class="Judul2"><em><br /></em></p><p class="Judul2"><strong><em>Abstract</em></strong></p><p><em>Universitas Papua has provided internet services that are shared in every faculty building with Wi-Fi as a sharing medium, in this research the activities carried out were observing and analyzing the quality of available Wi-Fi networks. In this research, how to measure the quality of this wireless network using the Drive Test method, where this method measures manually and collects data in real-time using several parameters including Bandwidth, Delay and Packet Loss. In this research, data collection using two network applications, namely Nagios XI and Wireshark. To looks at the quality of the network from the results of experiments conducted, the TIPHON standard is used. The results obtained are that the quality of using Bandwidth is good because it does not exceed the capacity that has been allocated for each building at Universitas Papua and can be seen from the average value of Delay and Packet Loss in each construction. The results of testing the quality of Wi-Fi network services indicate that the index value on the TIPHON standard is 4, which means it is excellent. Because of the Delay test, the highest value obtained when measured by Nagios XI is 76 ms, and the lowest is 21.8 ms, for measurements using Wireshark, the highest value is 72.4 ms, and the lowest is 10 ms. For Packet Loss, the results obtained are 0% when measured by Nagios XI and Wireshark.</em><em></em></p><p class="Judul2"><em><br /></em><em></em></p>
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Chotib, Ahmad Sulhi, Abdul Muis Sobri, and Cecep Nurul Alam. "SELECTING NETWORK MONITORING SYSTEM SOFTWARE WITH ANALYTICAL HIERARCHY PROCESS METHOD." JURNAL TEKNIK INFORMATIKA 13, no. 1 (July 17, 2020): 61–70. http://dx.doi.org/10.15408/jti.v13i1.15981.

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Nowadays there are lots of Network Monitoring System (NMS) software that are reliable and easy to use, such as CiscoWork, HP-OpenView, and IBM-Tivoli. It is just that the software is quite expensive, because it has classified as a commercial product. Fortunately, availability of NMS products is not limited to commercial, but also many other alternatives, namely products that classified as Free and Open Source Software (FOSS). Unfortunately, most of these FOSS products are not only difficult to implementation both in term of installation and configuration, but also limitations in the number of nodes and types of monitored, including network devices, servers, and applications. The method of selecting FOSS-based NMS software based on the Oyku Alanbay and ISO 7498-4 research methods through the Analytical Hierarchy Process (AHP) approach using the Expert Choice tool. Among GroundWork, Hyperic, Nagios, OpenNMS, and Zenoss, based on the results of this study put Nagios as a fair reliable software for monitoring networks, servers, and applications.
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Dissertations / Theses on the topic "Nagios"

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Lundqvist, Måns. "Design och implementation av övervakningssystem med Nagios." Thesis, Luleå tekniska universitet, Institutionen för system- och rymdteknik, 2017. http://urn.kb.se/resolve?urn=urn:nbn:se:ltu:diva-65999.

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Sherpas behöver en ny plattform för att kunna övervaka enheter på deras nätverk. Plattformen de ville använda sig av var Nagios Core och skulle kunna övervaka resurser som CPU, disk, minne, bandbredd, webbservrar och SQL servrar. Lösningen skulle även förenkla konfiguration av nya värdar. Tillägg för en översiktspanel och grafer skulle också installeras för att ge en bättre överblick. Lösningen installerades i en testmiljö med en stationär dator, bärbar dator med 3 virtuella maskiner och en switch. Nagios Core installerades på den stationära datorn. NRPE användes som Linux agent och installerades på Nagios servern och även på alla Linux servrar som skulle övervakas. Nagios insticksprogram installerades ocksåför att kunna övervaka de nödvändiga resurserna. Övervakning av Windows maskiner utfördes via WMI. För att övervaka switchar och routrar skapades ett eget insticksprogram iBash för att kunna ge de funktioner som krävdes. För att förenkla konfigurationerna av nya värdar användes värdgrupper. Varje värdgrupp är länkad till en tjänst och när en ny värd ska övervakas är det möjligt att skriva in de värdgrupper som hör till respektive tjänst. Lösningen användes endast i en liten miljö och insticksprogrammet som skapades kan innehålla eventuella problem som inte har upptäckts än. Programmet skapades också med ett programmeringsspråk som inte var lämplig i situationen och bör bytas ut i framtiden. Inget fokus på säkerhet gjordes och är något som måste implementeras i framtiden.
Sherpas needed a new platform to monitor machines on their network. The platform they wanted to use was Nagios Core to monitor resources like CPU, disk, memory, bandwidth, webservers and SQL servers. The monitor solution also needed a simple way to add new hosts. Addons for a dashboard and graphs was also needed for a better overview. The monitor platform was installed on a test environment with a stationary computer, laptop with 3 virtual machines and a switch. Nagios Core was installed on the stationary computer. NRPE was used as the agent and was installed on all Linux servers. Nagios plugins was also installed to be able to monitor the required resources. Monitoring of Windows machines was done with WMI. To monitor switches and routers a plugin was created with Bash. To simplify configuration for new hosts, host groups were used. All host groups are linked to a service and when new hosts are created the required services are monitored by selecting all the host groups which the services are linked to. This decreased the time required for configuring new hosts. The solution was only done with a very small environment and the plugin that was created could contain a few bugs that can be detected in the future. The program also used a programming language not suited for the situation and should be changed in the future. No focus on security was done and is something that should be implemented in the future.
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Karlsson, Olle. "Nagios-baserad övervakning : En undersökning av uthämtningsmetoders CPU-påverkan." Thesis, Linnéuniversitetet, Institutionen för datavetenskap, fysik och matematik, DFM, 2012. http://urn.kb.se/resolve?urn=urn:nbn:se:lnu:diva-19501.

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Qadir, Muhammad, and Muhammad Adnan. "Comparative Analysis of two Open Source Network Monitoring Systems : Nagios & OpenNMS." Thesis, Blekinge Tekniska Högskola, Sektionen för datavetenskap och kommunikation, 2010. http://urn.kb.se/resolve?urn=urn:nbn:se:bth-3460.

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Context: Extensive and rapid continuous growth in Internet Protocol (IP) based networks and as the result of increasing dependencies on these networks makes them extremely challenging to manage and keep them running all the time. 24/7 non-stop monitoring is important to minimize the down time of the network. For this reason dependency on automated network monitoring has been increased. Objectives: There are many tools and systems available for network monitoring. This includes expensive commercial solutions to open source products. Nagios and OpenNMS are two of the most popular systems and they are considered to be close competitors. Comparison discussions about them are very common at different forums on internet. But no empirical study for comparison analysis has been done. In this thesis the comparison study between Nagios and OpenNMS was conducted. Methods: Network monitoring functionalities are listed down from literature followed by industrial interviews with the networking professionals. Then taking these functionalities as a base, to evaluate, survey studies for both systems were conducted separately and comparison analysis of the results was performed. Usability evaluation of both systems was done by conducting usability testing and comparison analysis of the results was performed. Results: Besides providing the comparison of both systems this study also can help to findout the strengths and weaknesses of both systems separately. And in the end we suggested a list of functionalities and features which might help in selection of a monitoring system and also might be helpful for improvement of the monitoring systems.
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Alpizar, Santana Misael. "Análisis de nagios core como herramienta para el monitoreo de redes de datos." Tesis de Licenciatura, Universidad Autónoma del Estado de México, 2017. http://hdl.handle.net/20.500.11799/68999.

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Análisis de Nagios Core como herramienta para el monitoreo de redes de datos es un trabajo que muestra de manera general los puntos relevantes sobre el monitoreo en las redes de datos: qué es el monitoreo, en dónde se aplica el monitoreo, qué métricas son relevantes para el monitoreo de las redes de datos, qué es una herramienta para el monitoreo de redes de datos, qué herramientas existen para realizar el monitoreo en las redes de datos. Estos son algunos tópicos que se discuten en el primer capítulo de esta tesina. El enfoque principal de este trabajo consiste en mostrar los puntos necesarios para poner en marcha Nagios Core en su versión 4.2.4, una herramienta de código abierto con la libertad para la personalización en varios niveles: dispositivos, servicios, alertas, resolución de problemas, entre otros; conocida por su flexibilidad y robustez al momento de monitorear ambientes de red con diversos dispositivos y servicios. El objetivo de instalar dicha herramienta es investigarla en un ambiente de red de área local e identificar las fortalezas y debilidades detectadas en la práctica.
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Niebling, Frank. "Entwurf und Realisierung einer Configuration Management Database nach ITIL für den Service Desk der SLUB Dresden." Master's thesis, Saechsische Landesbibliothek- Staats- und Universitaetsbibliothek Dresden, 2010. http://nbn-resolving.de/urn:nbn:de:bsz:14-qucosa-62906.

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In der Arbeit wird der Entwurf und die Realisierung einer Configuration Management Database für den Service Desk der SLUB Dresden betrachtet. Es wird auf Grundlage von ITIL und den Anforderungen der SLUB ein Konzept zum Aufbau und zur Strukturierung der dabei relevanten Daten vorgestellt. Für den Import der Daten wird ein automatisiertes System geschaffen, das Daten aus verschiedenen Quellen mit der Configuration Management Database in regelmäßigen Abständen abgleicht. Der Service Desk erhält dadurch einen zentralen Zugriff auf Daten zu physikalischen Geräten sowie virtuellen Maschinen und kann diese in die Arbeitsprozesse integrieren. Zusätzlich wird das System durch den scriptbasierten Import von Verlinkungen zwischen virtuellen und physikalischen Servern und Ergebnissen aus der Geräte- und Netzwerküberwachung ergänzt. Schließlich wird betrachtet, welche weiteren Entwicklungsschritte auf Grundlage der vorgenommenen Änderungen möglich worden und welche Aspekte bei der Umsetzung dieser Schritte eine Rolle spielen.
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Nilsson, Kristoffer, and Ashour Shamoun. "Nätverksövervakning : En jämförelse av Sensu och op5 Monitor." Thesis, Linnéuniversitetet, Institutionen för datavetenskap (DV), 2014. http://urn.kb.se/resolve?urn=urn:nbn:se:lnu:diva-35054.

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Rapporten beskriver arbetet och resultaten av en jämförelse mellan Sensu och op5 Monitor, vilka är verktyg som används för att övervaka enheter i nätverk, så kallade network monitoring systems. Arbetet har utförts för att utbudet av nätverksövervakningsverktyg ständigt växer och det ansågs värdefullt att jämföra en ny aktör med ett äldre verktyg som är byggd på ett annat tankesätt. Det som ansågs intressant att testa var hur dessa verktyg hanterade de rapporter som skapades och samlades in, om det slutgiltiga resultatet från detta skulle skilja sig åt eller inte. För att testa detta sattes en virtuell testmiljö upp, där Sensu och op5 Monitor rullade parallellt med varandra och övervakade samma system och använde sig utav samma plugin för övervakningen. Experimenten utfördes på två stycken tjänster, BIND9 samt Apache2, i och med att de två pluginen som användes var uppbyggda på olika sätt konstruerades även olika experiment. Under dessa experiment samlades information in om hur de två övervakningsverktygen hanterade de rapporter de fick in, vilket sedan sammanställdes och analyserades. Slutsatsen av det hela var att Sensu och op5 Monitor hanterar sina insamlade rapporter på ett likvärdigt sätt, de rapporterade resultaten blev i samtliga fall detsamma, således fungerade de två övervakningsverktygen på ett jämgott vis.
The report describes the work and results of a comparison between Sensu and op5 Monitor, which are both tools used to monitor devices in a network, more commonly known as network monitoring systems. The subject was chosen due to the fact that there is such a wide range of network monitoring systems, and it is constantly expanding. It was considered valuable to compare a newcomer with an older tool that is built with a different mindset. It was considered interesting to test how these tools handled the reports created and collected by them, to see if the final results from this would differ or not. To test this a virtual testing environment was built, where Sensu and op5 Monitor were run in parallel to each other and monitored the same systems and used the same set of plugins. The experiments were conducted on two services, BIND9 and Apache2, since the plugins were constructed in different ways, so were the various experiments. In these experiments information was gathered about how the two monitoring tools handled the reports they received, which was then compiled and analysed. The conclusion of it all was that Sensu and op5 Monitor handles the collected information in a similar manner. The reported results were in all cases the same, thus the two monitoring tools behave in the same fashion.
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Rudeklint, Robin. "En kartläggning av nätverksövervakningssystem." Thesis, University of Skövde, School of Humanities and Informatics, 2010. http://urn.kb.se/resolve?urn=urn:nbn:se:his:diva-4053.

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Rapporten tar upp en kartläggning av nätverksövervakningssystem (NMS) som används för att övervaka nätverkstjänster och noder på ett nätverk. De egenskaper för NMS som utvärderas är vilket stöd systemen har för att övervaka ett flertal tjänster, hur god prestandan är för varje system samt hur god användbarheten i gränssnittet är. Resultatet visar att Nagios, OpenNMS samt Argus hade stöd för samtliga tjänster medan Munin inte hade stöd för nätverksenheter och Cacti endast stöd att övervaka SNMP. Det visar även att Nagios och OpenNMS generellt hade möjlighet att larma vid fler händelser samt att dessa två system var markant snabbare än Cacti och Munin. Användbarheten visade relativt stor skillnad i olika system. OpenNMS hade högst totalpoäng, men Nagios presterade något bättre i vad Sundström (2005) kallar för interaktion. Munin och Argus fick samma resultat med låg funktionalitet och högre struktur medan Cacti hade god funktionalitet och interaktion men väldigt låg struktur.

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Firantas, Rimantas. "SMS žinučių siuntimas FreeBSD serveryje." Bachelor's thesis, Lithuanian Academic Libraries Network (LABT), 2010. http://vddb.laba.lt/obj/LT-eLABa-0001:E.02~2010~D_20100903_093520-35545.

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Tikslas: FreeBSD serveryje konfigūruoti SMS žinučių siuntimą administratoriui, įvykus serverio sutrikimui. Analitinėje dalyje nagrinėjami aspektai: Programinės įrangos skirtos SMS žinučių siuntimui palyginimas; Techninių priemonių palyginimas; Internetinių sąsajų realizavimo būdai. Kuriamo produkto prototipai: FreeBSD serveris + GSM modemas - serveris sujungiamas su GSM modemu arba GSM telefonu ir SIM kortele. SMS žinutės siunčiamos naudojant GSM modemą; FreeBSD serveris + SMSC - serveryje įdiegiama speciali programa ir nustatoma darbui su SMSC serveriu, pvz., OMNITEL, per kurį bus siunčiamos SMS žinutės; FreeBSD serveris + SMS Gateway – naudojama komercinė SMS Gateway platforma, pasipildžius kreditus galima siųsti SMS žinutes. Technologinis sprendimas: Programavimui naudojama PHP kalba, HTML kalba, shell kalba. Panaudota programinė įranga: Gammu - programa SMS siuntimui ir įrašymui į duomenų bazę; Nagios - programa skirta pavojų nustatymams sutrikus serverio darbui; Macromedia Dreamweaver 8 – PHP ir HTML kalbos kodo rašymui; Apache – tinklo serverio kūrimui; MySQL – Gammu naudoja SMS žinučių laikymui ir gavimui. Naudotos UML diagramos: Administratoriaus panaudojimo atvejų diagrama; Sistemos procesų veikimo veiklos diagrama; Telefono numerio nustatymo veiklos diagrama; Sutrikimo atvejo nustatymo veiklos diagrama; Gaunamo SMS žinutės teksto nustatymo veiklos diagrama; Visų įrašų pažymėjimo veiklos diagrama; Įrašų šalinimo veiklos diagrama; Įrašų paieškos veiklos diagrama... [toliau žr. visą tekstą]
Project has been designed to alert administrators of disruption of the system, that he can get SMS messages every moment and to be able to know exactly what problems occurred in the system. On this project I analyzed and compared different software for sending SMS, analyzed the technical means for sending SMS. I choose Gammu and Nagios software which I make to interact with each other as one. To interact two different software helps shell script that uses configured SMS daemon. First software is Gammu which encompasses applications, scripts and drivers for managing various functions on cellular phones and similar devices. Second software is Nagios which in the event of a failure can alert administrator of the problem, allowing him to begin remediation processes before outages affect server processes. For sending SMS messages I used a device that can send SMS messages. Was chosen mobile phone SE W810i which is connected to the computer via a USB cable and seen directly in FreeBSD. MySQL relational database system - this Gammu uses to store/retrieve the SMS messages. Created web site where I can set phone numbers, several phones or just manage SMS storage. On SMS storage I can delete messages, or search for messages which I need. Web site is protected with password so on this web site can get in only administrator.
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Styblík, Zdeněk. "Monitorování služeb v síti internet." Master's thesis, Česká zemědělská univerzita v Praze, 2015. http://www.nusl.cz/ntk/nusl-258445.

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Diploma thesis deals with design and implementation of solution for monitoring servers and services over the Internet in combination with application for monitoring, Nagios. Common solutions are presented and evaluated first and serve as basis for design and implementation of a custom solution. Some of existing solutions were used, eg. HTTP protocol, others were developed, eg. scripts to automatically change Nagios configuration. Alternative solution for monitoring servers and services is the result of this diploma thesis.
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Falk, Mikael, and Karlsson Matias Fernandez. "Driftövervakning av Windows och Linux/Unix Servrar." Thesis, KTH, Kommunikationssystem, CoS, 2008. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-91853.

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Ju fler servrar, med olika konfigurationer och olika system, som blir medlemmar i ett nätverk, desto svårare och osmidigare blir det att övervaka nätverksmiljön. Men om man använder sig av ett övervakningssystem, som tar emot information från flera servrar, blir det lättare att få en överblick om hur allt fungerar och samtidigt som det går snabbare att få information om felmeddelanden, som man sedan kan åtgärda. I detta dokument tar vi upp olika typer av övervakningssystem som finns ute på marknaden idag, våren 2008. Bland dessa hittar vi t.ex. SCOM 2007, BigBrother, Nagios och Mon. Vi har inte begränsat oss till ett specifikt operativsystem, utan vi tar upp övervakningssystem som passar till Windows och/eller Linux/Unix. Utifrån den information vi hittat om varje övervakningssystem och de kriterier som Valderas Consulting AB vill att systemen ska uppfylla, har vi valt ut tre stycken övervakningssystem som vi tycker passar bäst. Dessa system har vi sen, ett och ett, testat i ett litet nätverk där vi utsätter det för en del scenarior som kan hända ute på företag som t.ex. trasig anslutning, för full hårddisk och kraschat operativsystem. De tre övervakningssystem vi tyckte höjde sig över mängden var SCOM 2007, Big Brother 4 och Nagios. Efter att ha testat vart och ett av dessa tre tycker vi att Nagios är det klart bästa. Det är användarvänligt i installationen, konfigurationen samt i övervakningen. En annan stor fördel med Nagios är att det är gratis, dvs. open source. Om ens datormiljö enbart innehåller Windows-datorer och en domän, passar SCOM 2007 bäst, då Nagios måste installeras på en Linux/Unix-dator. Big Brother 4 var bra det med, men faller bort pga. att det inte är gratis, färre testmöjligheter på nätverket och fungerade inte helt bra med att övervaka Linux/Unixdatorer.
The more servers you install in your network, which utilize different types of configurations and operative systems, the harder it gets to monitor the entire network. But if you use a monitoring system to monitor the network it will get much simpler. The monitoring system gathers information from all of your hosts and servers on your network and warns you if something is wrong or not working properly. In this document we will describe many of the monitoring systems that are out on the market today, spring 2008. Among these monitoring systems are: SCOM, BigBrother, Nagios, and Mon. We have not focused on a single operating system, but rather we have gathered information about monitoring systems that can be installed on Windows and/or Linux/Unix environments. From the information, which we have gathered about each monitoring system, and the criteria that Valderas Consulting AB gave us, we have focused on three monitoring systems that seem to be the best. We have installed these systems, one at a time, on a server that’s part of a small network, and run several tests, such as failure to the network and an operating system crash, to see how each system handles these failures in a real life environment. We thought that SCOM 2007, Big Brother 4, and Nagios were the best amongst the systems we looked at. After testing each one of them, we think that Nagios is the best. It is userfriendly regarding installation, configuration, and monitoring. One big advantage with Nagios is that it is free of charge, open source. If you have a computer-environment that contain computers with Windows, and you only have one domain, then SCOM 2007 is the system for you to choose, because Nagios only works if it is installed on a computer with Linux/Unix. Big Brother 4 was also ok, but it had some issues. It is not free of charge, and it did not have as many tests, to run on the network-units, as Nagios. We also had some problem, with Big Brother 4, regarding monitoring computers with Linux/Unix.
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Books on the topic "Nagios"

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Scherbaum, Tobias. Praxisbuch Nagios. Köln: O'Reilly, 2009.

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Nagios: System and network monitoring. 2nd ed. San Francisco: No Starch Press, 2009.

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Wolfgang, Barth. Nagios: System and network monitoring. San Francisco: No Starch Press, 2005.

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Short cuts network monitoring with Nagios. [Sebastopol, Calif.]: O'Reilly, 2006.

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s, Jean Gabe. Nagios 3, pour la supervision et la me trologie: De ploiement, configuration et optimisation. Paris: Eyrolles, 2009.

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Inc, ebrary, ed. Learning Nagios 3.0: A detailed tutorial to setting up, configuring, and managing this easy and effective system monitoring software. Birmingham, U.K: Packt Pub., 2008.

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Erdeljanin, Maja. Naglas. Novi Sad: Futura, 2005.

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Zaniewski, Andrzej. Nagosc. Kielce: Oficyna Wydawnicza Ston 2, 2004.

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Nagisa. Tōkyō: Kadokawa Shoten, 2013.

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Mennen, Toos. Nagels. Houten: Bohn Stafleu van Loghum, 2010. http://dx.doi.org/10.1007/978-90-313-8585-0.

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Book chapters on the topic "Nagios"

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Shetty, Jyothi, Shiva Saxena, G. Shobha, and Jagat Rastogi. "Monitoring OpenStack Services Using Nagios." In Emerging Research in Computing, Information, Communication and Applications, 485–95. New Delhi: Springer India, 2015. http://dx.doi.org/10.1007/978-81-322-2550-8_47.

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Sileika, Rytis. "A Website Availability Check Script for Nagios." In Pro Python System Administration, 217–39. Berkeley, CA: Apress, 2014. http://dx.doi.org/10.1007/978-1-4842-0217-3_8.

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Gamalielsson, Jonas, Björn Lundell, and Brian Lings. "The Nagios Community: An Extended Quantitative Analysis." In IFIP Advances in Information and Communication Technology, 85–96. Berlin, Heidelberg: Springer Berlin Heidelberg, 2010. http://dx.doi.org/10.1007/978-3-642-13244-5_7.

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Ali, Syed. "Monitoring with Nagios and Trend Analysis with Cacti." In Practical Linux Infrastructure, 167–95. Berkeley, CA: Apress, 2014. http://dx.doi.org/10.1007/978-1-4842-0511-2_7.

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Anusas-amornkul, Tanapat, and Sirasit Sangrat. "Linux Server Monitoring and Self-healing System Using Nagios." In Mobile Web and Intelligent Information Systems, 290–302. Cham: Springer International Publishing, 2017. http://dx.doi.org/10.1007/978-3-319-65515-4_24.

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Liu, Jia, Chengzhang Qu, and Tianhong Zhou. "Design and Implementation of Cloud Computing Platform Monitoring System Based on Nagios." In 2020 International Conference on Data Processing Techniques and Applications for Cyber-Physical Systems, 1473–78. Singapore: Springer Singapore, 2021. http://dx.doi.org/10.1007/978-981-16-1726-3_191.

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Mennen, Toos. "Inleiding." In Nagels, 3. Houten: Bohn Stafleu van Loghum, 2010. http://dx.doi.org/10.1007/978-90-313-8585-0_1.

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Mennen, Toos. "Verwaarloosde nagels." In Nagels, 83–87. Houten: Bohn Stafleu van Loghum, 2010. http://dx.doi.org/10.1007/978-90-313-8585-0_10.

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Mennen, Toos. "Nageltrauma." In Nagels, 89–92. Houten: Bohn Stafleu van Loghum, 2010. http://dx.doi.org/10.1007/978-90-313-8585-0_11.

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Mennen, Toos. "Nagelbeugeltechnieken." In Nagels, 93–102. Houten: Bohn Stafleu van Loghum, 2010. http://dx.doi.org/10.1007/978-90-313-8585-0_12.

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Conference papers on the topic "Nagios"

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Ali, Ghazanfar, Jon Hass, Alan Sill, Elham Hojati, Tommy Dang, and Yong Chen. "Redfish-Nagios." In HPDC '22: The 31st International Symposium on High-Performance Parallel and Distributed Computing. New York, NY, USA: ACM, 2022. http://dx.doi.org/10.1145/3526064.3534108.

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Imamagic, Emir, and Dobrisa Dobrenic. "Grid infrastructure monitoring system based on Nagios." In the 2007 workshop. New York, New York, USA: ACM Press, 2007. http://dx.doi.org/10.1145/1272680.1272685.

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Renita, J., and N. Edna Elizabeth. "Network's server monitoring and analysis using Nagios." In 2017 International Conference on Wireless Communications, Signal Processing and Networking (WiSPNET). IEEE, 2017. http://dx.doi.org/10.1109/wispnet.2017.8300092.

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Ciuffoletti, Augusto. "Beyond Nagios - Design of a Cloud Monitoring System." In Special Session on Experiences with OCCI. SCITEPRESS - Science and and Technology Publications, 2016. http://dx.doi.org/10.5220/0005778303630370.

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Katsaros, Gregory, Roland Kübert, and Georgina Gallizo. "Building a Service-Oriented Monitoring Framework with REST and Nagios." In 2011 IEEE International Conference on Services Computing (SCC). IEEE, 2011. http://dx.doi.org/10.1109/scc.2011.53.

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Li, Gang, Lei Liu, Zhisen Si, Lixia Zhou, and Jing Li. "Research on the Application of Nagios in Earthquake Information Network System." In 2nd International Conference on Computer Engineering, Information Science & Application Technology (ICCIA 2017). Paris, France: Atlantis Press, 2017. http://dx.doi.org/10.2991/iccia-17.2017.80.

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MingLi Wu, Zhongmei Zhang, and Yebai Li. "Application research of Hadoop resource monitoring system based on Ganglia and Nagios." In 2013 IEEE 4th International Conference on Software Engineering and Service Science (ICSESS). IEEE, 2013. http://dx.doi.org/10.1109/icsess.2013.6615399.

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Luchian, Eduard, Paul Docolin, and Virgil Dobrota. "Advanced monitoring of the OpenStack NFV infrastructure: A Nagios approach using SNMP." In 2016 12th IEEE International Symposium on Electronics and Telecommunications (ISETC). IEEE, 2016. http://dx.doi.org/10.1109/isetc.2016.7781055.

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Matte, Cinthia Fabiula, Gabriel Langwinski, Luciano Santos Cardoso, and Alessandra Bussador. "Comparação de Ferramentas para Monitoramento de Redes de Computadores em Ambientes Simulados." In Congresso Latino-Americano de Software Livre e Tecnologias Abertas. Sociedade Brasileira de Computação - SBC, 2022. http://dx.doi.org/10.5753/latinoware.2022.228021.

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Este artigo propõe a comparação das ferramentas gratuitas Zabbix, The Dude e Nagios para monitoramento de redes de computadores através de um ambiente simulado utilizando o emulador de software de rede GNS3. Com esta simulação e o esforço de configuração de cada sistema, que é objeto deste estudo, foi analisada a configuração do SNMPv2, latência e tráfego da rede e sua exposição de dados.
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Magda, Stefan Mihail, A. B. Rus, and V. Dobrota. "Nagios-based network management for Android, Windows and Fedora Core terminals using Net-SNMP agents." In 2013 RoEduNet International Conference, 11th Edition: Networking in Education and Research. IEEE, 2013. http://dx.doi.org/10.1109/roedunet.2013.6511742.

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Reports on the topic "Nagios"

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Cruz Zúñiga, Mercedes, and Sindy Julieth Barrera Suarez. Caracterización de la normas internacionales de auditoria (NIAS) direccionada al efectivo y equivalentes del efectivo en la empresa de servicios públicos Empitalito e.s.p ubicada en el municipio de Pitalito Huila. Universidad Nacional Abierta y a Distancia, 2021. http://dx.doi.org/10.22490/ecacen.5435.

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Las Normas Internacionales de Auditoria (NIAs) emitidas por Comité Internacional de Normas de Auditoría y Seguridad IAASB de la Federación Internacional de Contadores (IFAC) expedidas decreto 302 del 2015. Anteriormente llamadas Normas de Auditoria Generalmente aceptadas (NAGAS) siguiendo los elementos fundamentales para identificar y evaluar los riesgos de incorrección material en la información financiera de los entes. El objetivo de las (NIAs) es obtener fiabilidad y razonabilidad en los estados financieros y así mismo identificar los principios que recaen en los profesionales que ejercen la disciplina de la contabilidad dentro un ámbito económico. Se identifican los factores de evaluación en la implementación de las Normas Internacionales de Auditoria direccionada al efectivo y equivalentes del efectivo en la empresa de servicios públicos Empitalito E.S.P. ubicada en el municipio de Pitalito Huila. La presente investigación es de enfoque Mixto se vincularán datos cualitativos y cuantitativos, los resultados que generados servirán como un punto de partida a la profesión contable mediante estrategias que facilitan la comprensión de las (NIAs). Como consecuencia de lo anterior proporcionara estrategias que minimizaran el desgaste físico y emocional a los contadores públicos que se les dificulta la aplicación y comprensión de las mismas y por ende se mejorara la productividad de las empresas que desencadena procesos y procedimientos cambiantes por la globalización.
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