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Migracija mobilnih jedrnih omrežnih elementov v oblak
ID METLJAK, PETER (Author), ID Pustišek, Matevž (Mentor) More about this mentor... This link opens in a new window

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PID: 20.500.12556/rul/de6b9bf9-83fa-45aa-9f5f-5f1ab050f4bf

Abstract
Razvoj TK-operaterjev se preveša iz okolja s strogo namensko arhitekturo v navidezna okolja s skupno platformo za vse storitve in tehnologije. Obstoječa namenska arhitektura je v današnjem hitrorastočem in prometno nepredvidljivem okolju vse bolj nefleksibilna in prepočasi razširljiva. Prehod v virtualna okolja dodaja zmogljivosti računalništva v oblaku obstoječim TK-omrežjem. Portfelj ponujanih storitev TK-operaterja v virtualnem okolju po novem tako obsega TK-storitve v oblaku na podlagi navidezne omrežne funkcije oz. VNF in na podlagi programsko določenega omrežja oz. SDN, podprtem z zalednimi sistemi, kot npr. OSS/BSS v IT-oblaku. Prav tako se operaterji odločajo za uvedbo ali najem komercialnih oblakov, kjer svojim strankam nudijo vse storitve, ki olajšajo in optimizirajo vsakdanje delo v poslovnem okolju. Noben prehod v novo okolje ni sam po sebi povsem samoumeven in premočrten, pač pa splet trenutnih zmogljivosti zagotavljanja storitev, načrtovanja podpore bodočim storitvam, ki temeljijo na novih, hitro razvijajočih se tehnologijah in specifičnih značilnostih posameznega trga. Uvajanje naprednih rešitev mora iti skozi sito ustrezne varnostne politike nasproti uporabniku in izvajalcu storitve ob podpori izbire primerne rešitve selitve v virtualno okolje. V diplomskem delu je poseben poudarek na virtualizaciji omrežne opreme v smislu nadomeščanja obstoječe omrežne opreme s programsko modularno opremo na zmogljivi komercialni strojni opremi, tj. s ciljem zagotavljanja visoke odzivnosti, neodvisnosti med strojno/programsko opremo in finančne optimalnosti. Izvedba ločitve programske/strojne opreme in upravljanja omrežnih storitev na podlagi ločevanja kontrolne ravnine od podatkovne sloni na vpeljavi NFV- in SDN-funkcij. Kombinacija obeh funkcij bo pripomogla k večji enostavnosti in prožnosti omrežne arhitekture, blaženju omrežnih obremenitev in kombiniranemu izvajanju storitev. Postopek prehoda v novo okolje se izvaja s procesom migracije. Migracija inicialno obsega podrobno analizo storitev omrežnega elementa, ki ga nameravamo migrirati na primerno platformo, ki bo lahko podprla trenutne, ter razvoj in integracijo novih storitev. Konkreten primer migracije, opisane v tem diplomskem delu, je migracija uporabniških baz – vUSPP »HLR/HSS/MNP/AAA« na namensko virtualno platformo. USPP-platforma ponudnika ZTE je v tem primeru najbolj ustrezala vsem arhitekturnim kriterijem po visoki zanesljivosti. Po izbrani platformi sledi oblikovanje na visoki in nizki stopnji, ki določa na eni strani neposredno vpetost v celostno omrežno arhitekturo operaterja (povezljivost, soodvisnost, podatkovna analiza obstoječe baze), na drugi strani pa natančno določanje sistemskih in opcijskih parametrov aplikacij. Po oblikovni sledi neposredna migracijska faza na novo platformo, ki vključuje prenos baz podatkov, spremembo usmerjanja, Roll Back-mehanizma ter končni nadzor in opazovanje na podlagi spremljanja ključnih KPI.

Language:Slovenian
Keywords:VNF, SDN, migracija, virtualno okolje, uporabniška baza
Work type:Bachelor thesis/paper
Organization:FE - Faculty of Electrical Engineering
Year:2016
PID:20.500.12556/RUL-86853 This link opens in a new window
Publication date in RUL:10.11.2016
Views:1471
Downloads:426
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Secondary language

Language:English
Title:Migration of Mobile Core Network Elements to Cloud
Abstract:
Development of Telecommunication operaters is shifting from the environment with strictly dedicated architecture in virtual environments with a common platform for all services and technologies. Existing dedicated architecture in today's fast growing and traffic unpredictable environment is increasingly inflexible and slow expandable. The transition to a virtual environment adds capabilities of cloud computing to existing telecommunication networks. Portfolio of ofered services of the Telecommunication operaters in a virtual envirnoment, now also comprises telecommunication services in the cloud based on the virtual network functions or VNF and software-defined network or SDN, supported by back-end systems such as OSS / BSS in the IT cloud. Operators can also decide to introduce or rent commercial cloud where users are offered all the services, to facilitate and optimize every day work in a business environment. No transition to a new environment is quite straight forward and obvious, but the mix of current capacity to deliver services, planning support future services that are based on new and rapidly evolving technologies and specific market features. The introduction of advanced solutions pass through a sieve adequate security policies across the user and the service provider with the support of the selection of appropriate solutions for moving to a virtual environment. The thesis is a special focus on virtualization of network equipment in terms of the replacement of existing network equipment with modular software programs on a powerful commercial hardware with the goal of providing high responsiveness, independence between hardware / software and financial optimality. Implementation of separation software / hardware management and network services based on the separation of the control plane and user plan is based on the introduction of NFV and SDN features. The combination of these features will contribute to greater simplicity and flexibility of the network architecture, mitigating network load and combined delivery of services. The process of transition to a new environment is carried out with the migration process. Migration will initially comprises a detailed analysis of the services network element that we plan to migrate to a suitable platform that can support current and the development and integration of new services. A concrete example of the migration described in this thesis, is the migration of customer databases - vUSPP HLR / HSS / MNP / AAA on a dedicated virtual platform. ZTE USPP platform provider, in this case most suit all architectural criteria for high reliability. Once platform is chosen, it's followed by high and low level design, which provide on the one hand, direct integration into the overall network architecture operator (connectivity, correlation, analysis of existing data bases), on the other hand, precise determination of system parameters and optional applications. After the design, migration phase is followed by direct migration to the new platform, which includes the transfer of the database, change routing, Roll Back mechanism and finally control and surveillance on the basis of monitoring key KPIs.

Keywords:SDN, VNF, migration, virtual envirnoment, user database

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