PhD THESIS TOPICS AND MATERIALS IN MASTERS PROJECT TOPICS IN TELECOMMUNICATION ENGINEERING

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PhD THESIS TOPICS AND MATERIALS IN MASTERS PROJECT TOPICS IN TELECOMMUNICATION ENGINEERING

MASTER’S PROJECT TOPICS IN TELECOMMUNICATION ENGINEERING

A. 5G / 6G Networks (1–15)

1.      Performance analysis of massive MIMO systems for 5G mobile networks.

2.      Optimization of beamforming techniques in 5G NR deployment.

3.      Energy-efficient resource allocation in 6G ultra-dense networks.

4.      Design and simulation of 5G-compatible small cell architecture.

5.      Interference mitigation strategies in heterogeneous 5G networks.

6.      Evaluation of 5G millimeter-wave propagation in urban environments.

7.      Machine learning–based channel estimation for 6G wireless systems.

8.      Security vulnerabilities and countermeasures in 5G core networks.

9.      Optimization of network slicing for quality of service in 5G.

10.    Comparative analysis of OFDM vs FBMC modulation for 5G systems.

11.    AI-enabled self-organizing networks (SON) in 6G architecture.

12.    Impact of MIMO antenna parameters on 5G throughput performance.

13.    6G terahertz communication system modeling and attenuation analysis.

14.    Adaptive power control algorithms for next-generation mobile networks.

15.    Investigating latency reduction techniques in 5G URLLC applications.

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B. Internet of Things (IoT) & Smart Systems (16–30)

16.    Design of a secure IoT-based home automation system.

17.    Performance evaluation of Low Power Wide Area Networks (LPWAN) for smart cities.

18.    IoT-enabled smart metering system using NB-IoT technology.

19.    Development of a wireless sensor network for environmental monitoring.

20.    Lightweight cryptographic algorithms for IoT device security.

21.    Comparative study of ZigBee, LoRaWAN, and BLE for IoT applications.

22.    Fault-tolerant communication protocols for IoT medical devices.

23.    Real-time IoT-based industrial monitoring and control system.

24.    Energy harvesting strategies for autonomous IoT sensors.

25.    Secure firmware update mechanisms for embedded IoT devices.

26.    Blockchain-based identity authentication for IoT networks.

27.    Predictive maintenance using IoT and machine learning models.

28.    Design of a mobile app–controlled IoT agricultural irrigation system.

29.    Integration of UAVs with IoT for remote surveillance.

30.    Scalability analysis of IoT cloud platforms for large deployments.

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C. Wireless Communication & RF Engineering (31–45)

31.    RF propagation modeling for indoor wireless environments.

32.    Design and simulation of a microstrip patch antenna for 5G bands.

33.    Development of cognitive radio architecture for dynamic spectrum access.

34.    Performance analysis of spread-spectrum techniques in wireless systems.

35.    Design of a frequency-selective surface for electromagnetic shielding.

36.    Channel modeling and fading analysis in mobile wireless systems.

37.    Development of software-defined radio–based communication system.

38.    Interference analysis in densely populated WLAN environments.

39.    Adaptive modulation and coding techniques for wireless channels.

40.    RF energy harvesting circuits for wireless sensor networks.

41.    Optimization of antenna diversity techniques for mobile devices.

42.    Experimental evaluation of MIMO antenna performance.

43.    Ultra-wideband (UWB) communication system design for indoor localization.

44.    RF power amplifier linearization for improved communication quality.

45.    Development of a reconfigurable antenna using PIN diodes.

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D. Optical Communication & Fiber Systems (46–60)

46.    Design of an optical fiber communication link with dispersion compensation.

47.    Performance analysis of WDM systems under nonlinear impairments.

48.    Application of optical OFDM in high-speed communication networks.

49.    Investigation of free-space optical communication under atmospheric turbulence.

50.    Optimization of erbium-doped fiber amplifiers (EDFA) in long-haul networks.

51.    Fiber-to-the-home (FTTH) network planning and cost optimization.

52.    Secure optical communication using quantum key distribution principles.

53.    Assessment of passive optical network (PON) architectures.

54.    Development of adaptive equalization algorithms for optical channels.

55.    Modeling polarization mode dispersion in optical fibers.

56.    Photonic crystal fiber design for improved dispersion performance.

57.    Digital signal processing techniques for optical coherent receivers.

58.    Underground fiber cable fault detection using OTDR technology.

59.    Large-capacity optical communication using space-division multiplexing.

60.    Machine learning–aided fault detection in optical networks.

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E. Satellite Communication & Space Systems (61–70)

61.    Link budget analysis of a Ku-band satellite communication system.

62.    Design of a satellite-based emergency communication network.

63.    Performance evaluation of LEO satellites for global broadband.

64.    Mitigation of rain fade in Ka-band satellite systems.

65.    Satellite-to-ground communication modeling under atmospheric attenuation.

66.    Development of GNSS-based precise positioning application.

67.    Delay and jitter analysis in satellite IoT communication links.

68.    Comparative analysis of GEO, MEO, and LEO satellite networks.

69.    Low-cost ground station design for nanosatellite communication.

70.    Inter-satellite laser communication system modeling and analysis.

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F. Cybersecurity in Telecommunication Systems (71–80)

71.    Intrusion detection systems for 5G network security.

72.    Vulnerability assessment of telecom signaling protocols (SS7, Diameter).

73.    Development of secure VoIP communication using encryption algorithms.

74.    Detection of rogue base stations in cellular networks.

75.    Blockchain-based secure communication protocol for telecom networks.

76.    Cyber-physical attack detection in smart telecom infrastructure.

77.    Secure routing algorithms for mobile ad hoc networks.

78.    Analysis of SIM cloning attacks and mitigation strategies.

79.    Development of machine learning models for telecom fraud detection.

80.    Secure key exchange mechanisms for wireless communication systems.

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G. Signal Processing, AI & Machine Learning (81–90)

81.    Noise reduction in speech signals using deep learning techniques.

82.    Design of adaptive filters for channel noise suppression.

83.    Machine learning–based spectrum sensing in cognitive radio networks.

84.    AI-enhanced voice recognition for telecommunication systems.

85.    Deep learning for channel equalization in wireless communication.

86.    Smart antenna beam selection using reinforcement learning.

87.    Modulation classification using neural networks.

88.    Predictive modeling of network congestion using machine learning.

89.    Signal compression algorithms for bandwidth optimization.

90.    Machine learning–based QoS prediction in cellular networks.

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H. Embedded Systems, Communication Electronics & Network Design (91–100)

91.    Design of a microcontroller-based digital communication system.

92.    Development of a GSM-based remote monitoring system.

93.    FPGA implementation of a digital modulation/demodulation scheme.

94.    IoT-enabled embedded system for smart energy metering.

95.    Real-time data acquisition system for industrial communication.

96.    Automated fault detection system for telecommunication towers.

97.    Solar-powered wireless communication system for rural areas.

98.    Development of a campus-wide wireless mesh network.

99.    Design and optimization of VoIP network architecture.

100.  Performance evaluation of LTE network coverage in urban environments.

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