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Um sistema computacional para leitura e análise de mensagens ISUP do sistema móvel celular. / A SYSTEM FOR COMPUTER READING AND ANALYSIS MESSAGES ISUP MOBILE PHONE SYSTEMMELO, Carlos Afonso Araújo 03 October 2002 (has links)
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Previous issue date: 2002-10-03 / In this work a system is proposed to minimize the time of search of possible flaws in messages ISUP. The entrance of the proposed system is represented by files containing messages of user's part ISDN, they can be from ACM (Address completes) to USR (User-to-user information). the exit of the proposed system is exhibited through another file containing the reads message and all your meaning, as well as an analysis of the translation. The results obtained show that the time for decoding is extremely reduced. The consideration presented generates taking of decision demonstrating the applicability of the proposed system. / Neste trabalho é proposto um sistema para minimizar o tempo de busca de possíveis falhas em mensagens ISUP. A entrada do sistema proposto é representada por arquivos contendo mensagens da parte de usuário ISDN, que podem ser desde a ACM (Address complete) até a USR (User-to-user information). A saída do sistema proposto é exibida através de um outro arquivo contendo a mensagem lida e todo o seu significado, assim como uma análise da tradução. Os resultados obtidos mostram que o tempo para decodicação é extremamente reduzido. A consideração apresentada gera tomada de decisão demonstrando a aplicabilidade do sistema proposto.
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Prototyp av en VoIP/PSTN-gateway / Prototype of a VoIP/PSTN gatewayBroström, Anders, Kihlstadius, Niclas January 2007 (has links)
<p>Under de senaste åren har Internettelefonin varit på frammarsch, och i takt med att tekniken mognat har fler och fler börjat se den som ett alternativ till att ringa via telefonnätet. Förutom att det är billigare att ringa över det förstnämnda, så erbjuder Internettelefonin också en rad revolutionerande tjänster. Det är dock troligt att telefonnätet kommer att få tjänstgöra i många år till, och det erbjuder fortfarande överlägset bäst stabilitet och har stor acceptans. Om de två telefoninätverken ska existera sida vid sida, med varsina användarbaser är det lämpligt om de kan fås att samverka, så att användare av det ena kan ringa användare av det andra, och vice versa. Detta kan göras med en VoIP/PSTN-gateway, som översätter kontrollinformation och rösttrafik mellan de två nätverken.</p><p>Uppsatsen handlar om det arbete vi har utfört år TietoEnator i Karlstad. Uppgiften bestod i att utveckla en prototyp av en VoIP/PSTN-gateway. Från början var det avsett att systemet skulle klara uppringning från endera en ”vanlig” telefon, eller en så kallad IP-telefon. Därtill skulle rösttrafiken överföras genom ändamålsenlig hårdvara. För att utföra arbetet behövde vi först studera relevanta kommunikationsprotokoll både för telefonnätet och för Internet, för att se hur dessa kunde fås att samverka. Vi behövde också lära oss tillgängliga system, bibliotek och verktyg för att förstå hur vi skulle skapa vårt eget system i den efterkommande implementeringsfasen. På grund av en lång inläsningsperiod och inledande tekniska problem, samt att nödvändig hårdvara för översättning av rösttrafiken inte anlände i tid begränsades arbetet till att innefatta samtal initierade från den vanliga telefonen till ip-telefonen, utan röstöverföring. Likväl har ett resultatgivande arbete utförts, och det beskrivs i detalj i rapporten.</p> / <p>During the past few years Internet telephony has advanced rapidly, and as the technology has evolved, more and more have come to consider it an alternative to making phone calls through the telephone network. Besides being cheaper, Internet telephony also provides several revolutionary services. It is likely though that the telephone network will remain in use for several years to come, and it still offers by far the best stability and is accepted by most people. If the two networks are to coexist, with their respective users, it would be useful if they could be made to interact, so that users of one network can call users of the other, and vice versa. This can be done with a VoIP/PSTN gateway, which translates control information and voice traffic between the two networks.</p><p>Our dissertation is about the work we have performed for TietoEnator in Karlstad. The assignment was to develop a prototype of a VoIP/PSTN gateway. Initially the system was meant to support phone calls initiated either from an “ordinary” phone or from an IP telephone. Also the voice traffic was supposed to be translated with the use of appropriate hardware. To manage this we first needed to study all the relevant protocols for communication used in the telephone network and on the Internet, to get an idea of how these could be made to interact. We also had to learn existing systems, libraries and tools in order to see how we could create our own system. Due to a long learning period and technical problems in the beginning, and because the necessary hardware equipment for translation of voice traffic did not arrive in time, the assignment was limited to include only calls initiated from the ordinary phone to the IP telephone, without voice transmission. Never the less, the efforts have produced results, and our work is explained in detail in this dissertation.</p>
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Prototyp av en VoIP/PSTN-gateway / Prototype of a VoIP/PSTN gatewayBroström, Anders, Kihlstadius, Niclas January 2007 (has links)
Under de senaste åren har Internettelefonin varit på frammarsch, och i takt med att tekniken mognat har fler och fler börjat se den som ett alternativ till att ringa via telefonnätet. Förutom att det är billigare att ringa över det förstnämnda, så erbjuder Internettelefonin också en rad revolutionerande tjänster. Det är dock troligt att telefonnätet kommer att få tjänstgöra i många år till, och det erbjuder fortfarande överlägset bäst stabilitet och har stor acceptans. Om de två telefoninätverken ska existera sida vid sida, med varsina användarbaser är det lämpligt om de kan fås att samverka, så att användare av det ena kan ringa användare av det andra, och vice versa. Detta kan göras med en VoIP/PSTN-gateway, som översätter kontrollinformation och rösttrafik mellan de två nätverken. Uppsatsen handlar om det arbete vi har utfört år TietoEnator i Karlstad. Uppgiften bestod i att utveckla en prototyp av en VoIP/PSTN-gateway. Från början var det avsett att systemet skulle klara uppringning från endera en ”vanlig” telefon, eller en så kallad IP-telefon. Därtill skulle rösttrafiken överföras genom ändamålsenlig hårdvara. För att utföra arbetet behövde vi först studera relevanta kommunikationsprotokoll både för telefonnätet och för Internet, för att se hur dessa kunde fås att samverka. Vi behövde också lära oss tillgängliga system, bibliotek och verktyg för att förstå hur vi skulle skapa vårt eget system i den efterkommande implementeringsfasen. På grund av en lång inläsningsperiod och inledande tekniska problem, samt att nödvändig hårdvara för översättning av rösttrafiken inte anlände i tid begränsades arbetet till att innefatta samtal initierade från den vanliga telefonen till ip-telefonen, utan röstöverföring. Likväl har ett resultatgivande arbete utförts, och det beskrivs i detalj i rapporten. / During the past few years Internet telephony has advanced rapidly, and as the technology has evolved, more and more have come to consider it an alternative to making phone calls through the telephone network. Besides being cheaper, Internet telephony also provides several revolutionary services. It is likely though that the telephone network will remain in use for several years to come, and it still offers by far the best stability and is accepted by most people. If the two networks are to coexist, with their respective users, it would be useful if they could be made to interact, so that users of one network can call users of the other, and vice versa. This can be done with a VoIP/PSTN gateway, which translates control information and voice traffic between the two networks. Our dissertation is about the work we have performed for TietoEnator in Karlstad. The assignment was to develop a prototype of a VoIP/PSTN gateway. Initially the system was meant to support phone calls initiated either from an “ordinary” phone or from an IP telephone. Also the voice traffic was supposed to be translated with the use of appropriate hardware. To manage this we first needed to study all the relevant protocols for communication used in the telephone network and on the Internet, to get an idea of how these could be made to interact. We also had to learn existing systems, libraries and tools in order to see how we could create our own system. Due to a long learning period and technical problems in the beginning, and because the necessary hardware equipment for translation of voice traffic did not arrive in time, the assignment was limited to include only calls initiated from the ordinary phone to the IP telephone, without voice transmission. Never the less, the efforts have produced results, and our work is explained in detail in this dissertation.
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Emulátor telefonní ústředny / Switching Centre EmulatorRaur, Martin January 2012 (has links)
This work is an introduction to the GSM system. Gives basic information about its structure, active elements, used protocols and signaling messages. It gives a propsal for structures for emulator of telephone exchange.
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Emulátor Mobilní telefonní ústředny / Mobile Switching Centre EmulatorKrálíček, Jan January 2013 (has links)
This thesis attempts to provide basic overview of the topic of the GSM system and tries to design Mobile Switching Centre Emulator that could perform the operation Location Update. The first part of this thesis describes the principles and specifics of the GSM network (network structure, the operations required to support user mobility, network entities, etc.). The second part of this thesis describes the SS7 signaling protocols, SIGTRAN and MAP protocol. The final part deals with design of the emulator.
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Prostate Cancer and Other Clinical Features by Polygenic Risk ScoreSpears, Christina M. 16 August 2022 (has links)
No description available.
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[en] DEVELOPMENT OF A SIMULATION TOOL FOR CELLULAR NETWORK PLANNING AND PERFORMANCE EVALUATION BASED ON THE SIGNALING LOAD / [pt] DESENVOLVIMENTO DE UMA FERRAMENTA DESIMULAÇÃO PARA PLANEJAMENTO E ANÁLISE DO DESEMPENHO DE REDES CELULARES A PARTIR DA CARGA DE SINALIZAÇÃO GERADARODRIGO CESAR D ALBRIEUX DE CARVALHO 14 June 2002 (has links)
[pt] Com o advento dos sistemas celulares de segunda e terceira
gerações é esperado que as operadoras se vejam obrigadas a
enfrentar um aumento dramático na carga de sinalização
que trafega sobre a parte fixa da rede móvel. Apesar disso,
são raros os provedores de serviços de comunicações móveis
que possuem atualmente a capacidade de prever com
relativa precisão o montante desse aumento. Este trabalho
apresenta as etapas do desenvolvimento de uma ferramenta de
simulação para análise de desempenho de redes de
comunicação móvel celular com base na carga de sinalização
gerada pelos procedimentos que a mantém em operação. A
plataforma de simulação inclui um modelo de mobilidade e
teletráfego para caracterizar o processo de geração dos
cenários típicos de uma rede móvel celular e um modelo de
retardos para representação da rede de sinalização. Ao
final do estudo,são apresentados exemplos de aplicação da
ferramenta na obtenção de resultados sobre gerência de
status, gerência de localização, avaliação da carga de
sinalização,dimensionamento da rede de sinalização e
análise de desempenho para diferentes configurações de rede. / [en] The advent of second and third generation cellular systems
make cellular operators face dramatic increase in the
signaling traffic over the fixed part of the mobile
network. In spite of this, rare mobile communications
service providers are able to forecast the above mention
increase and quantify it with reasonable precision. This
work describes the development process of a simulation tool
for performance analysis of cellular mobile network based
on the signaling load generated by the procedures that
keeps it working. The simulation platform inlcudes a
mobility and teletraffic model to describe the generation
process of cellular mobile networks tipical scenarios and a
delay model to represent the signaling network. At the end,
examples showing the application of the simulation tool to
obtain results about status and location management,
signaling load evaluation, signaling network planning and
performance analysis for different network configurations
are presented.
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