Course detail
High-speed Communications Systems
FEKT-KVKSAcad. year: 2018/2019
The course is designed for those who want to have a deeper knowledge of Synchronous Digital Hierarchy SDH, basics of Asynchronous Transfer Mode ATM and, above all, modern technologies such as Ethernet, Fast Ethernet, Gigabit Ethernet, 10 Gbit Ethernet, 40 Gbit Ethernet, 100 Gbit Ethernet and Frame Relay. Students will be made familiar with the Telecommunication Management Network TMN. They will gain practical experience of the CISCO 2821 system, with emphasis on IP telephony in CISCO networks and on IP-MPLS routing. Students will deepen their understanding of VoIP signalling protocols, covered protocol set H.323 and Quality of Service QoS in connection with VoIP.
Language of instruction
Number of ECTS credits
Mode of study
Guarantor
Department
Learning outcomes of the course unit
- explain the specificity of Fast Ethernet, Gigabit Ethernet, 10 Gigabit Ethernet, 40 Gigabit Ethernet, and 100 Gigabit Ethernet,
- demonstrate the bases of Asynchronous Transfer Mode ATM,
- reproduce the ITU-T SDH Recommendation,
- appraise the multiplex SDH structure,
- interpret the integration of contributory signals to SDH,
- demonstrate the architecture of the Czech Republic synchronization network,
- demonstrate the bases of a Telecommunication Management Network TMN,
- characterize voice transmission using VoIP,
- operate IP-MPLS routing,
- enumerate important transmission protocols,
- explore VoIP and QoS,
- discuss analogue and digital voice ports,
- utilize plan of dialling,
- experiment with the high-speed CISCO system,
- demonstrate the IOS operational system.
Prerequisites
Co-requisites
Planned learning activities and teaching methods
Assesment methods and criteria linked to learning outcomes
0-10 points - written test in laboratory, (optional part),
0-15 points – elaboration of individual project,
0-70 points - written exam with e-learning support, compulsory part for course completion.
The exam is focused on verifying the orientation of high-speed communication systems with a view to SDH and Ethernet.
Course curriculum
2 Synchronous Digital Hierarchy - SDH. Recommendation ITU-T about SDH, multiplex structure of SDH, frame STM-1 structure, synchronous multiplexing STM-1 to STM-4, SDH generation.
3. Integration of 4th-order PDH into STM-1, pointer AU-4/PTS, stuffing of frame beginning, integration of E1 into STM-1. Ethernet over SDH. Network elements and nodes of SDH. Structure of SDH networks.
4. Architecture of the Czech synchronization network. Quality of digital channel evaluation, area of using Rec. G.826.
5. ATM technology. ATM cell, interfaces of ATM networks, ATM connection, addressing in ATM, reference model of ATM. ATM adaptive layer, ATM quality of service.
6. TMN - Telecommunication Management Network. Function blocks of TMN. Physical TMN architecture.
7. Basics of voice transmission using IP. Using the CISCO technology. The principles of VoIP, VoIP signalling protocols, set of covering protocols H.323.
8. IP-MPLS routing.
9. Important protocols MGCP, SIP (Session Initiation Protocol), SCCP (Skinny Client Control Protocol).
10. Protocols for media transports RTP (Real Time Transport Protocol), RTCP (RTP Control Protocol), cRTP (Compressed RTP), sRTP (Secure RTP). VoIP gates, hardware gates.
11. VoIP and QoS. Sound quality for IP, the methods used, voice packets, processing by codecs, processing by DSP processors.
12. Analogue voice ports, local calling, calling in network, calling out of network, voice ports on CISCO IOS routers, analogue voice port configuration, trunks, Dial-peers. Digital voice ports, digital trunks, CAS T1, CAS E1 R2, QSIG. Gate control, H.323 protocol, implementation of MGCP gates, implementation of SIP gates.
13. Plan of dialling. Addressing of end points. Routing of calling and path selection. Handling of digits. Calling privilege, calling monitoring, requirements for dialling plan. Problem termination.
Work placements
Aims
Specification of controlled education, way of implementation and compensation for absences
Recommended optional programme components
Prerequisites and corequisites
Basic literature
Recommended reading
WALLACE,K. Cisco VoIP, autorizovaný výukový průvodce. Computer Press, Brno 2009.
Classification of course in study plans
Type of course unit
Lecture
Teacher / Lecturer
Syllabus
2 Synchronous Digital Hierarchy - SDH. Recommendation ITU-T about SDH, multiplex structure SDH, frame STM-1 structure, synchronous multiplexing STM-1 to STM-4, SDH generation.
3. Integration of PDH 4.th order to STM-1, pointer AU-4/PTS, stuffing of frame beginning, integration E1 to STM-1. Ethernet over SDH. Network elements and nodes SDH. Network SDH structure.
4. Architecture of Czech synchronization network. Quality of digital channel evaluation, area of using Rec. G.826.
5. Technology ATM. ATM cell, interfaces of ATM networks, ATM connection, addressing at ATM, reference model ATM. ATM adaptive layer, ATM quality of service.
6. TMN - Telecommunication Management Network. Function blocks TMN. Physical TMN architecture.
7. Basics of voice transmission using IP. Using of CISCO technology. Principles of VoIP, signalling protocols VoIP, covered protocols set H.323, important protocols MGCP, SIP (Session Initiation Protocol), SCCP (Skinny Client Control Protocol). Protocols for medium transports RTP (Real Time Transport Protocol), RTCP (RTP Control Protocol), cRTP (Compressed RTP), sRTP (Secure RTP). gates VoIP, hardware gates.
8. VoIP and QoS. Sound quality for IP, using methods, voice packets, processing by codecs, processing by processors DSP
9. Analogue voice ports, local calling, calling in network, calling out of network, voice ports on routers CISCO IOS, analogue voice ports configuration, trunks, Dial-peers
10. Digital voice ports, digital trunks, CAS T1, CAS E1 R2, QSIG
11. Gates control, protocol H.323, implementation of gates MGCP, implementation of gates SIP
12. Plan of dialling. Addressing of end po
Laboratory exercise
Teacher / Lecturer
Syllabus
2. CISCO VoIP
3. MPLS VPN
4. CISCO security
5. Přenos FHHS
6. CDMA
7. BER
8. Bandwidth
9. Voiceband
10. DSS