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Telecom Protocol Testing Training:

Prime Bit Solutions is bracketed with reputed institutes that are offering the best LTE protocol testing training and telecom protocol testing training for fresher, RF engineers, OSS & BSS engineers, optimization engineers, O&M engineers & technical support engineers who have wish to shift their career into wireless chip development. If you enroll in our program, we will provide you an insight related to the following topics:

  • Software Design for WCDMA
  • WCDMA Hardware Design
  • Introduction to Long Term Evolution (LTE)
  • Network Architecture
  • LTE Protocol Stack Architecture
  • LTE Identification and Pool Area
  • LTE Channels
  • LTE IP Address allocation
  • Connectivity of LTE with Wi-Fi
  • LTE Security and Authentication
  • LTE QoS and EPS bearer
  • Selection Procedure
  • LTE Voice
  • IMS with MPS
  • MBMS in LTE
  • LTE offloading function
  • NAS Layer and Procedures
  • RRC Layer and Procedures
  • Physical Layer and MAC Layer Procedures
  • RLC ,PDCP layer  and its procedure
  • LTE Mobility 4567y8i0p|
  • LTE Call Processing Overview
  • 3GPP
  • Testing Methodology and Scripting Language (TTCN3, PYTHON,PERL)
  • Testing Tools, etc.

Therefore, come to us and enhance your career today with our exceptionally good training sessions. You can contact us for joining our protocol testing training at any time of the year.

 Course Name                       :        Protocol Stack Testing Training
 Deployment Options           :        Online/classroom - Instructor-Led Training
 Course Duration                  :        3 Months
LTE Protocol Testing Training Course Objectives

At the end of course you will have

  • Good understanding of Different technologies- UMTS, HSDPA,HSUPA,HSPA+, LTE, LTE Advance, IMS, Voip, SIP and Bluetooth
  • Expertise  Access and Non-Access stratum modules (Layer3/Layer2/layer1) mandatory for 2G/3G /4Gprotocol stack modules.
  • Expertise in RRM, RRC, RLC/MAC, MM, SNDCP, SPV, SNDCP, Layer2, etc
  • Very good overview of relevant module specifications Good experience understanding and decoding the 3GPP
  • Understanding of Call Processing concepts in one or more of the following air interface standards LTE(FDD or/and TDD) or HSDPA/ HSUPA/HSPA+,GSM/ GPRS /EDGE / Rel99/ Rel5 /rel8/rel9
  • Expertise in analyzing logs, troubleshooting issues from field or lab for UMTS/GSM CS, PS calls, LTE Data calls, VoLTE, eMBMS .
  • Excellent knowledge in 2G/3G/4G  3GPP system architecture, protocol specifications and related procedures in control and data plane on Non-Access, Acces-Stratum and Layer 1 level
  • Good understanding of  of PS internal component architecture and interconnection of PS sub-components to meet the requirements of the system for Multimode Protocol Stacks
  • Monitor and support 3GPP UMTS/LTE related standards and standardization work
  • Expertise in Conformance testing and Interoperability testing
  • Exposure to any of these Network simulators Agilent / Anite / R&S / Anritsu
  • Expertise in creating Test plan and Test cases Development
  • Expertise in scripting languages TTCN2 , TTCN3 /perl
 Target Audience
  •  Freshers, RF Engineers,OSS & BSS Engineers, Optimization Engineers, O&M Engineers & Technical support Engineers who have wish to shift their career into Wireless Chip Development.
  •  It is strongly recommended that candidates must have basic idea of C programming and Wireless concept.
 Course Technical Summary
Technology & protocol

LMP, L2CAP, RFCOMM S&T HCI, UMTS-FDD(RRC, RCC, MAC, PLY, BMC,PDCP, RLC), Core network protocol,HSDPA,HSUPA,HSPA+,LTE and SAE,Voip and SIP,WCDMA. CS and PS procedures and message flow.Acess Stratum and Non Access stratum data and signalling flow within the wireless protocol stack and different channels.





TTCN2, TTCN3, Perl




Clearcase,SVN,CVS,GDB,DDD,JIRA,In-Circuit Simulators,Wireshark,Protocol Analyzer,Anritsu,Aeroflex








Infineon,Broadcom,Intel,Qualcom,ARM 7, ARM 9, ARM 11



Re 99,Re,5,R4 See 8, Re 9, Re,10.

26 Series- Codec.

25 Series- Aceess Startum

24 Series- NAS

21 Series- Requirement Management.

30 Series-Program Management

 UMTS Course Outlet
 Module 1:                                                 WCDMA : A Brief Concept

Different tyoes of Radio Access Technology.

  • Detailed introduction to the Protocol Stack Architecture and operation of the WCDMA radio interface from physical layer to application layers.
  • Principles behind the operation of the physical layer such as spreading and scrambling codes  and the WCDMA modulation.
  • Details of baseband processing functions such as rake receiver, rate matching, channel coding and decoding (including Turbo codes), interleaving and changes when operating in compressed mode.
  • Different  types of Handover and inter-working between GSM and WCDMA such as soft handover, hard handover, intersystem handover and etc.
  • Review of layers 2, 3 and Non Access Stratum protocols including principles of operation of the radio interface as a whole.
 Module 2:                                               Software Design for WCDMA
  • Different Types of Logical,Transport and Physical Channels and their functionalities.
  • Introduction to the principles and operation of the physical layer
  • DL and UL Physical Layer processing
  • MAC layer structure and operation. Examples of operation for transport format combination and the random access process.
  • Detailed review of the RLC layer and its different operating modes-TM,UM,AM Details of structure and operation of RRC protocol and RRC state machine with in-depth consideration of RRC                procedures including bearer management, connection management, security management and mobility management.
  • Non Access Stratum functions including both GSM and GPRS based protocols as well as detailed consideration of SIP and SDP protocols as part of the R5 IP Multimedia Subsystem 3GPP.
 Module 3:                                                  WCDMA Hardware Design
  • Introduction to spread spectrum and modulation.
  • Transmitter hardware design, physical layer processing stages in the transmitter. Coding, interleaving, transport format combining and filtering.
  • Receiver hardware design, key symbol rate functions such as channel decoding and interleaving. Rake receiver considered in detail 3GPP.
 Module 4:                                                        Signalling Procedures
  • CS call flow
  • PS Data flow
  • Mult icall flow
  • Video call flow
  • HSPA and HSPA+

 HSDPA Course Outlet
 Module 5:                                               HSDPA Fundamentals
  • Describe High Speed Downlink Packet Access (HSDPA)
  • State the motivations for deploying HSDPA
  • Describe the HSDPA channels and their functions
  • llustrate the maximum HSDPA data rate
  • Explain issues that affect data rate in a real world deployment
  • Describe other implementation considerations
 Module 6:                                                    HSDPA Protocol Stack
  • Define the HSDPA data transfer model and describe how HSDPA addresses the Rel99 limitations for packet data service
  • Recognize the HSDPA protocol stack components and functions
  • List Node B enhancements to support HSDPA
  • Identify HSDPA physical layer channels and explain channel coding
  • Explain UE physical layer processing needed to accomplish HSDPA operations
  • Summarize and explain Layer 2 protocols including MAC-d multiplexing and HARQ
  • Summarize and explain Layer 3 protocols and procedures
  • Overview HSDPA deployment scenarios, resource allocation and common issues
 Module 7:                                                         HSUPA Fundamentals
  • State the motivations for the introduction of HSUPA
  • Name applications benefiting from HSUPA
  • Describe the 3GPP UMTS and WCDMA releases and features
  • Explain basic HSUPA concepts and operation
  • Name and describe key HSUPA features
  • Explain how maximum data rate is achieved
  • Describe the different UE categories for HSUPA
 Module 8:                                                     HSUPA Protocol Stack
  • Recall the main motivations for the introduction of HSUPA
  • Identify the Rel 6 uplink and downlink enhancements
  • Overview the UMTS network architecture and protocols
  • Explain how HSUPA operates
  • List the HSUPA Physical Layer channels and describe HSUPA channel mapping and coding
  • Outline the physical channel procedures performed in the UE and Node B to accomplish HSUPA operations
  • Explain the MAC operation to support HSUPA
  • Describe the HSUPA MAC architecture of UE and UTRAN
  • Identify the HSUPA RRC functions
  • Explain the call flow for setting up HSUPA operations, in conjunction with either R99 of HSDPA data connections
  • Describe the impact of UE state transitions on HSUPA operation.
 Module 9:                                                        HSPA+Protocol Stack
  • Identify motivations behind Release 7 and 8 enhancements.
  • List Release 7 features that aid in achieving higher data rates and how this evolved further in Release 8 and later.
  • Describe Release 7 features such as MIMO and higher order modulation schemes as well as Rel 8 features such as MIMO with 64-QAM and CD-HSDPA that allow for higher data rates.
  • Explain how new features such as CPC and enhancements to RRC states in Release 7 and 8 allow more efficient system operation.



 LTE and SAE Course Outlet


 Module 10:                                                  Introducttion Of LTE
  • Describe 3GPP Technology evolution.
  • Explain Downlink and Uplink air interface
  • Describe LTE network architecture.
  • Recognize MIMO, Hybrid ARQ,SC-FDMA  and OFDM.
 Module 11:                                                          Architecture
  • Hardware architecture and different interfaces.
  •  Protocol stacks and user plane
  • State diagrams
  •  Bearers, channels and services
 Module 12:                                     Air Interface Physical Layers and LTE Channels


  • Explain Uplink and Downlink Signals that support LTE
  • List Downlink  Physical Channel, Transport Channel and Logical Channel.
  • Describe Uplink Physical Channel, Transport Channel and Logical Channel.
  • Explain how to pass Uplink and Downlink Control Information
  • Describe Uplink and Downlink Channel Type Mapping
 Module 13:                                          Higher Layer Protocols and Procedures
  • Description of the protocols in layer 2 of the air interface (MAC, RLC and PDCP) and layer 3 (RRC and the non-access stratum).
  • Describe different type of system information Block, Measurement event and measurement report.
  • Describe Physical and Mac layer procedure that includes Random access, Timing Advance, Uplink power control and channel quality indication.
  • Discuss Signalling procedure with demonstration of RRC connection Establishment,Bearer Establishment, Tracking area update and intersystem handover.
  • Describe idle Mode procedures  through explanation with PLMN selection, Cell Selection,Cell Reselection, Access Control and Paging Procedures.
 Module 14:                                            LTE Call Processing Overview
  • Describe the EPS network architecture and nodes
  • State how subscription information and LTE device capability are utilized to support PLMN selection, cell search, and cell camping
  • Explain intra-frequency and inter-frequency cell reselection during Idle state mobility
  • Illustrate the paging mechanism in idle state
  • Describe the EPS Attach Procedure, authentication and security activation
  • Illustrate the establishment of EPS bearers to support the transport of user plane application data
  • Explain QoS support and UE and NW dedicated EPS bearer establishment
  • Illustrate connectivity to multiple APNs
  • Summarize event configuration to facilitate measurements and reporting in connected state
  • List different types of intra-LTE handovers and seamless data transport during handovers
  • Describe different Radio Link failure scenarios and recovery mechanisms
  • Show the inter-RAT handover mechanism for UTRAN and eHRPD
  • Explain Circuit Switched Fallback (CSFB)
 Module 15:                                                             3GPP
  • Re 99,Re,5,R4 See 8, Re 9, Re,10.
  • 26 Series- Codec.
  • 25 Series- Aceess Startum
  • 24 Series- NAS
  • 21 Series- Requirement Management.
  • 30 Series-Program Management
 Module 16:                                    Testing Methodology and Scripting Language
  • Purpose of Testing
  • Testing through the Life Cycle
  • Testing types and Stages of Mobile
    • Pre-acceptance testing
    • Conformance testing
    • Production testing
    • Functional testing
    • Unit Testing
      • Functionality testing white and Black box testing
      • Regression testing
    • I&C, maintenance live and field trial testing
    • Application and end-to end testing
    • Load and stress testing
    • Non Functional testing
    • Verification and Validation Testing
    • General Development Testing
  • Integration testing 
    • What is Integration testing?
    • How it works?
  • Conformance testing of UMTS
    • The origin of UMTS Conformance testing
    • Understanding of Conformance Specification
    • Layer 2 testing
    • Layer 3 testing
    • Testing Protocol
  • Conformance Testing and TTCN
    • Protocol conformance testing
    • Conformance test and test architecture
    • Conformance testing Language and tools
      • TTCN 2
      • TTCN 3
    • Advantages of TTCN and Conformance Testing
    • Summary of conformance test case life cycle
      • TTCN 2 Test Cases
      • TTCN 3 Test Cases
  • Perl
 Module 17:                                                        Testing Tools
  • Bug Tracking tool: JIRA and BugZilla
  • Version tool: CVS ,SVN
  • Software configuration management : clear case
  • Compiler: GCC and ASN.1
  • Protocol Analyzer and network Simulator.
  • Chipset and Log capture tool: Broadcom, Intel and qualcom.
  • 3GPP Specification 
  • Our technical expert will guide the project by explaining how to
  •  Develop test plans and test cases based on the marketing and design requirements for new features or update existing features.
  • Validate the design and test new features, functionalities thoroughly providing thorough coverage to features testing.
  • Conformance, IOT,  regression, performance and stability testing.
  • Discover the bugs, file them using bug tracking tool, verify bugs after the fix and track the bug status
  • Reproduce the customer reported bugs, verify the fix and convert it to test case
  • Write test cases using TTCN 3 , PERL or any other tool selected.

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