Generalized Fuzzy Decision Making Approaches for Sound, Vibration, and Reliability Engineering under Uncertainty

    Deadline for Manuscript Submissions: 31 March 2027

     

    Special Issue Editor

    Dr. Tahir Mahmood  Website  E-Mail: tahirbakhat@iiu.edu.pk
    International Islamic University Islamabad, H-10 Islamabad 44000, Pakistan
    Interests: Fuzzy Algebra, Fuzzy Decision Making, Generalizations of Fuzzy Sets and Their Applications.

    Special Issue Information:

    Dear Colleagues,

    Sound and vibration phenomena play a crucial role in the analysis, design, monitoring, and optimization of modern engineering systems. Applications ranging from aerospace structures and manufacturing systems to smart infrastructure and rotating machinery often involve complex, uncertain, and incomplete information. Traditional analytical and statistical approaches provide valuable insights into dynamic behavior; however, they may be insufficient when uncertainty arises from measurement errors, expert judgments, environmental variability, and subjective assessments.

    In recent years, generalized fuzzy structures derived from Zadeh’s fuzzy set theory including intuitionistic, bipolar, complex, and hybrid fuzzy models have emerged as effective tools for modeling uncertainty and supporting robust decision-making. These frameworks have been successfully applied to vibration-control strategy selection, machinery reliability assessment, structural health monitoring, fault diagnosis, sensor evaluation, maintenance planning, and reliability analysis in uncertain environments.

    At the same time, multi-criteria decision-making methods such as TOPSIS, VIKOR, and EDAS, together with their fuzzy extensions, have become increasingly important for solving engineering decision problems related to sound, vibration, dynamics, and reliability. Recent advances include novel aggregation operators, uncertainty-aware reliability models, vibration-based condition monitoring, predictive maintenance strategies, and the integration of fuzzy methodologies with artificial intelligence, machine learning, digital twins, and IoT technologies.

    This Special Issue aims to bring together researchers and practitioners working at the connection of generalized fuzzy structures, intelligent decision-making, sound and vibration engineering, machinery reliability, structural dynamics, and engineering optimization. Contributions addressing both theoretical developments and practical applications are highly encouraged, particularly those supporting smart manufacturing, Industry 5.0, and resilient engineering systems.

    Dr. Tahir Mahmood

     

    Keywords:

    • Generalized fuzzy sound and vibration analysis
    • Generalized fuzzy machinery reliability assessment
    • Generalized fuzzy structural health monitoring
    • Generalized fuzzy fault diagnosis systems
    • Generalized fuzzy vibration-based decision making
    • Generalized fuzzy reliability-centered maintenance
    • Generalized fuzzy decision making based on artificial intelligence
    • Generalized fuzzy decision making based on machine learning
    • Generalized fuzzy decision making for reliability engineering

    While submitting a manuscript for this special issue, mention under which keyword/ keywords your manuscript is aligned with this special issue. If you have any questions about the special issue, please contact the Receiving Editor Lorena (lorena@acad-pub.com).