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    "title": "A COMPREHENSIVE REVIEW OF VIBRATION RECORDERS FOR SUSPENSION TUNING TECHNIQUES, APPLICATIONS, AND RESEARCH GAPS FOR A SMOOTHER DRIVE",
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            "value": "This paper gives a comprehensive review of the numerous technologies of vibration recordingwhich are used for suspension systems tuning of vehicles for ride quality, comfort, and stability.Since road conditions, vehicle dynamics, and load conditions have a direct influence onsuspension performance, correct measurement and analysis of vibrations are very crucial foroptimum settings of suspension. This includes many methods for recording vibratory motion,including accelerometer-based systems, laser vibrometer, strain gauges, gyroscopic sensors,inertial measurement units (IMUs), displacement sensors, and acoustic sensors. Everytechnique is studied in terms of its working principles, advantages, limitations, and practicaluse applications in suspension adjustment"
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                "unstructured": "Soliman, A., & Kaldas, M. (2021). Semi-active suspension systems from research to massmarket–A review. Journal of Low Frequency Noise, Vibration and Active Control, 40(2), 1005-1023. https://doi.org/10.1177/1461348419876392"
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                "doi": "10.1177/0954407020944287",
                "unstructured": "Qi, H., Zhang, N., Chen, Y., & Tan, B. (2021). A comprehensive tune of coupled roll and lateral dynamics and parameter sensitivity study for a vehicle fitted with hydraulically interconnected suspension system. Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering, 235(1), 143-161. https://doi.org/10.1177/0954407020944287"
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                "doi": "10.1109/tiv.2024.3401868",
                "unstructured": "Böhle, M., Schick, B., & Müller, S. (2024). Steering Feedback in Dynamic Driving Simulators: The Influence of Steering Wheel Vibration and Vehicle Motion Frequency. IEEE Transactions on Intelligent Vehicles. https:// doi.org/10.1109/TIV.2024.3401868"
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                "unstructured": "Yang, X., Yan, L., Shen, Y., Li, H., & Liu, Y. (2021). Dynamic performance analysis and parameters perturbation study of inerter–spring–damper suspension for heavy vehicle. Journal of Low Frequency Noise, Vibration and Active Control, 40(3), 1335-1350. https://doi. Fig3. Identified Research Gaps Sai Harish Yenduri: A COMPREHENSIVE REVIEW OF VIBRATION RECORDERS FOR SUSPENSION TUNING TECHNIQUES, APPLICATIONS, AND RESEARCH GAPS FOR A SMOOTHER DRIVE org/10.1177/1461348420962898"
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                "key": "ref5",
                "doi": "10.3390/app12083994",
                "unstructured": "Lei, Y.-J., Li, R.-J., Zhang, L.-S., Hu, P.-H., & Huang, Q.-X. (2022). Optical Accelerometers for Detecting Low-Frequency Micro-Vibrations. Applied Sciences, 12(8), 3994. https://doi. org/10.3390/app12083994"
            },
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                "key": "ref6",
                "doi": "10.1177/0020294019877484",
                "unstructured": "Soave, E., D’Elia, G., & Mucchi, E. (2020). A laser triangulation sensor for vibrational structural analysis and diagnostics. Measurement and Control, 53(1-2), 73-82. https://doi. org/10.1177/0020294019877484"
            },
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                "key": "ref7",
                "doi": "10.3390/s23042204",
                "unstructured": "Hassani, S., & Dackermann, U. (2023). A Systematic Review of Advanced Sensor Technologies for Non-Destructive Testing and Structural Health Monitoring. Sensors, 23(4), 2204. https://doi.org/10.3390/s23042204"
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                "key": "ref8",
                "doi": "10.3390/s22197405",
                "unstructured": "Gill, W.A., Howard, I., Mazhar, I., & McKee, K. (2022). A Review of MEMS Vibrating Gyroscopes and Their Reliability Issues in Harsh Environments. Sensors, 22(19), 7405. https:// doi.org/10.3390/s22197405"
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                "doi": "10.1109/tim.2023.3284957",
                "unstructured": "Patrizi, G., Carratù, M., Ciani, L., Sommella, P., Catelani, M., & Pietrosanto, A. (2023). Analysis of Inertial Measurement Units Performances Under Dynamic Conditions. IEEE Transactions on Instrumentation and Measurement, 72, 1-13. https://doi.org/10.1109/TIM.2023.3284957"
            },
            {
                "key": "ref10",
                "doi": "10.3390/infrastructures6010004",
                "unstructured": "Zona, A. (2021). Vision-Based Vibration Monitoring of Structures and Infrastructures: An Overview of Recent Applications. Infrastructures, 6(1), 4. https://doi. org/10.3390/infrastructures6010004"
            },
            {
                "key": "ref11",
                "doi": "10.3390/s20144051",
                "unstructured": "Rathod, V.T. (2020). A Review of Acoustic Impedance Matching Techniques for Piezoelectric Sensors and Transducers. Sensors, 20(14), 4051. https://doi.org/10.3390/s20144051"
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                "key": "ref12",
                "doi": "10.1080/14484846.2019.1585224",
                "unstructured": "Vasanth, X.A., Paul, P.S., Lawrance, G., & Varadarajan, A.S. (2019). Vibration control techniques during turning process: a review. Australian Journal of Mechanical Engineering, 19(2), 221–241. https://doi.org/10.1080/1448 4846.2019.1585224"
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                "unstructured": "Guastadisegni, G., De Pinto, S., Cancelli, D., Labianca, S., Gonzalez, A., Gruber, P., & Sorniotti, A. (2023). Ride analysis tools for passenger cars: objective and subjective evaluation techniques and correlation processes–a review. Vehicle System Dynamics, 62(7), 1876–1902. https:// doi.org/10.1080/00423114.2023.2259024"
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