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Journal articles on the topic 'Industrial noise Noise control'

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1

Bell, L. H., and H. Saunders. "Industrial Noise Control." Journal of Vibration and Acoustics 107, no. 2 (1985): 271–72. http://dx.doi.org/10.1115/1.3269256.

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2

Robinson, W. D. "Industrial noise control." Physics in Technology 16, no. 3 (1985): 107–20. http://dx.doi.org/10.1088/0305-4624/16/3/302.

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3

Bacria, Vasile, and Nicolae Herisanu. "Noise Control in an Industrial Hall." Applied Mechanics and Materials 430 (September 2013): 251–56. http://dx.doi.org/10.4028/www.scientific.net/amm.430.251.

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nside the industrial halls one can find different noisy machines and equipments. During their work these ones generate noise and vibrations which affect human beings inside or outside the hall. In this paper we present the results obtained in the investigation of the acoustic field generated by sources within an industrial hall emphasizing the frequency spectra, characteristic parameters, propagation way and some effects generated. A description of measurements is included together with an analysis of obtained results as well as the establishment of noise mitigation methods consisting in acous
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4

Erdreich, John. "Using noise dosimeters in an industrial noise control program." Journal of the Acoustical Society of America 86, S1 (1989): S38. http://dx.doi.org/10.1121/1.2027483.

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5

Gerges, Samir N. Y., and Brandon Tinianov. "Tutorial on Industrial Noise Control." Journal of the Acoustical Society of America 112, no. 5 (2002): 2452. http://dx.doi.org/10.1121/1.4780100.

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6

Oddo, Remy, Anthony Gérard, Michel Pearson, et al. "Industrial fan noise control using flow obstructions." Journal of the Acoustical Society of America 133, no. 5 (2013): 3264. http://dx.doi.org/10.1121/1.4805286.

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7

Chui, Jonathan, Yong Ma, and Salem Hertil. "Application of barrier in industrial noise control." Journal of the Acoustical Society of America 117, no. 4 (2005): 2386. http://dx.doi.org/10.1121/1.4785739.

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8

Roth, Stephen I. "Industrial noise control—Technical and economic feasibility." Journal of the Acoustical Society of America 117, no. 4 (2005): 2527. http://dx.doi.org/10.1121/1.4788387.

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9

Kwon, Nahyun, Moonseo Park, Hyun-Soo Lee, Joseph Ahn, and Mingyu Shin. "Construction Noise Management Using Active Noise Control Techniques." Journal of Construction Engineering and Management 142, no. 7 (2016): 04016014. http://dx.doi.org/10.1061/(asce)co.1943-7862.0001121.

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10

Seebold, James G. "Control Valve Noise." Noise Control Engineering Journal 24, no. 1 (1985): 6. http://dx.doi.org/10.3397/1.2827643.

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11

Scarinci, Thomas, and John L. Halpin. "Industrial Trent Combustor—Combustion Noise Characteristics." Journal of Engineering for Gas Turbines and Power 122, no. 2 (2000): 280–86. http://dx.doi.org/10.1115/1.483207.

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Thermoacoustic resonance is a difficult technical problem that is experienced by almost all lean-premixed combustors. The Industrial Trent combustor is a novel dry-low-emissions (DLE) combustor design, which incorporates three stages of lean premixed fuel injection in series. The three stages in series allow independent control of two stages—the third stage receives the balance of fuel to maintain the desired power level—at all power conditions. Thus, primary zone and secondary zone temperatures can be independently controlled. This paper examines how the flexibility offered by a 3-stage lean
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12

Ang, Linus, Yong Koh, and Heow Lee. "Plate-Type Acoustic Metamaterials: Experimental Evaluation of a Modular Large-Scale Design for Low-Frequency Noise Control." Acoustics 1, no. 2 (2019): 354–68. http://dx.doi.org/10.3390/acoustics1020019.

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For industrial applications, the scalability of a finalised design is an important factor to consider. The scaling process of typical membrane-type acoustic metamaterials may pose manufacturing challenges such as stress uniformity of the membrane and spatial consistency of the platelet. These challenges could be addressed by plate-type acoustic metamaterials with an internal tonraum resonator. By adopting the concept of modularity in a large-scale design (or meta-panel), the acoustical performance of different specimen configurations could be scaled and modularly combined. This study justifies
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13

Mo, Qiu Yun, and Feng Gao. "A Study on Heart Load Affected by Industrial Noise." Advanced Materials Research 179-180 (January 2011): 549–53. http://dx.doi.org/10.4028/www.scientific.net/amr.179-180.549.

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This paper demonstrates a method and its implementation on workers’ heart load affected by industry noise, and, to develop a related data processing system. Heart rate variability (HRV) is used as an assessment index. The affected regulation of human’s heart is obtained by large number of noise experiments. This method emphasizes the human heart load among the all factors of labor safeties, the noise influence discipline can be debated scientifically from both engineering physiology and psychology. The results show when to control the industrial noise it is much important to control the ingred
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14

Pawełczyk, Marek, and Mariusz Latos. "Earplug Actuator Selection for a Miniature Personal Active Hearing Protection System." Archives of Acoustics 35, no. 2 (2010): 213–22. http://dx.doi.org/10.2478/v10168-010-0020-6.

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AbstractThere are many industrial environments which are exposed to a high-level noise. It is necessary to protect people from the noise. Most of the time, the consumer requires a miniature version of a noise canceller to satisfy the internal working place requirements. Very important thing is to select the most appropriate personal hearing protection device, for example an earplug. It should guarantee high passive noise attenuation and allow for secondary sound generation in case of active control. In many cases the noise is nonstationary. For instance, some of the noisy devices are switched
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15

Jovanovic, Jovica, and Milan Jovanovic. "Lipid disturbances at workers professionally exposed to industrial noise." Jugoslovenska medicinska biohemija 23, no. 1 (2004): 69–73. http://dx.doi.org/10.2298/jmh0401069j.

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Industrial noise can damage the hearing organ, cardiovascular, endocrine, gastrointestinal, peripheral and central nervous system of exposed workers. The atherogenic risk at workers professionally exposed to noise was assessed by measuring total cholesterol, triglycerides, HDL cholesterol, LDL cholesterol and calculating the ratio: T-C/HDL-C and LDL-C/HDL-C. The exposed group consisted of 150 workers professionally exposed to noise intensity of 70?110 dB. The results were compared to a control group of 80 workers working in relatively silent environment. Serum lipid parameters were examined by
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16

Wilson, Charles E., and J. Adin Mann. "Noise Control (Revised Edition)." Noise Control Engineering Journal 55, no. 5 (2007): 476. http://dx.doi.org/10.3397/1.2769941.

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17

Pelton, Howard K. "Theme park noise control." Noise Control Engineering Journal 47, no. 5 (1999): 169. http://dx.doi.org/10.3397/1.599306.

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18

Cabelli, A., I. G. Pearson, I. C. Shepherd, and D. H. Collins. "Control of Noise from an Industrial Gas Fired Burner." Noise Control Engineering Journal 29, no. 2 (1987): 38. http://dx.doi.org/10.3397/1.2827689.

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19

Hansen, Colin H. "Current and future industrial applications of active noise control." Noise Control Engineering Journal 53, no. 5 (2005): 181. http://dx.doi.org/10.3397/1.2839255.

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20

Papini, Guilherme S., Ricardo L. U. F. Pinto, Eduardo B. Medeiros, and Filipe B. G. Coelho. "Hybrid approach to noise control of industrial exhaust systems." Applied Acoustics 125 (October 2017): 102–12. http://dx.doi.org/10.1016/j.apacoust.2017.03.017.

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21

Pawlaczyk-łuszczyńska, Malgorzata, Adam Dudarewicz, Małgorzata Waszkowska, Wiesław Szymczak, Maria Kameduła, and Mariola Śliwińska-Kowalska. "Does Low Frequency Noise at Modarate Levels Influence Human Mental Performance?" Journal of Low Frequency Noise, Vibration and Active Control 24, no. 1 (2005): 25–42. http://dx.doi.org/10.1260/0263092054037711.

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The aim of this study was to assess the influence of low frequency noise (LFN) at levels normally occurring in the industrial control rooms on human mental performance (attention, visual perception and logical reasoning) and subjective well-being. Subjects were 191 male volunteers categorised in terms of subjective sensitivity to noise in general. They performed standardised tests: the Signal Detection Test (test I), the Stroop Colour-Word Test (test II), and two sub-tests of the General Aptitude Test Battery, i.e. the Math Reasoning Test (test III) and the Comparing of Names Test (test IV). T
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22

Radičević, Branko, Mišo Bjelić, Mile Savković, Nebojša Zdravković, and Aleksandra Petrović. "Development of methodology for the industrial noise control in the case of the dedusting system of a foundry." IMK-14 - Istrazivanje i razvoj 26, no. 3 (2020): 65–73. http://dx.doi.org/10.5937/imk2003065r.

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The article presents the methodology for industrial noise control in the case of the dedusting system of a foundry. The developed methodology starts from the fact that noise protection is possible at the source of noise itself, on the paths of sound waves, and at the place of reception. The model for noise prediction is the basis of the methodology for solving specific examples, which consists of two parts, the source model and the noise propagation model. The result of the model is a noise field, based on noise map creation time. The activities in the procedure of noise protection are defined
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23

KOBAYASHI, Hiroshi, Masaharu KOH, Shunichi OZAKI, Makoto YOKOCHI, and Takuo SATO. "Newly-Developed Adaptive Noise Absorption Control Technology for High Speed Fan Noise Reduction." JSME International Journal Series C 49, no. 3 (2006): 703–12. http://dx.doi.org/10.1299/jsmec.49.703.

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24

Maling, George, Adnan Akay, and Eric W. Wood. "Progress on consumer and industrial product noise control and technology transfer: summaries of the 2015 and 2016 TQA workshops." INTER-NOISE and NOISE-CON Congress and Conference Proceedings 263, no. 3 (2021): 3871–75. http://dx.doi.org/10.3397/in-2021-2545.

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Progress on consumer and industrial products noise reduction, was a Technology for a Quieter America (TQA) workshop and International INCE symposium hosted by the National Academy of Engineering (NAE) held in October 2015 . The workshop consisted of two major parts, consumer products at home and commercial and industrial products. The former included appliances, waste disposers, leaf blowers, Information Technology Equipment and automotive interior noise. The second half of the workshop included such industrial products as air moving devices, industrial power generation equipment generator set
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25

Chang, Cheng-Yuan, Xiu-Wei Liu, Sen M. Kuo, et al. "Active noise control for centrifugal and axial fans." Noise Control Engineering Journal 68, no. 6 (2020): 490–500. http://dx.doi.org/10.3397/1/376840.

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Fans are widely used in industry for heat dissipation or airflow production. It is achieved by driving a motor of fan to rotate a number of blades. Most industrial fans can be categorized into one of two general types: centrifugal fans and axial fans. However, fan noise is loud when the motor speed is high. This article develops using active noise control (ANC) system to reduce noise from both centrifugal and axial fans. By integrating loudspeakers and microphones, we present multiple-channel feedback ANC structure with the filtered-X least mean square (FXLMS) algorithm to simultaneously reduc
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26

Lyle, C. D. "The Integration of Noise Control in Plant Design—A Review." Proceedings of the Institution of Mechanical Engineers, Part A: Power and Process Engineering 202, no. 1 (1988): 53–61. http://dx.doi.org/10.1243/pime_proc_1988_202_007_02.

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Adequate control of industrial noise is essential to ensure that local residents are not subjected to nuisance and that people on site are not exposed to noise levels which cause hearing impairment. Noise control engineering should be an integral part of the design process. This paper explains what noise limits must be met and how the noise control requirements should be incorporated in the project. It is shown how noise control interacts with other engineering disciplines to achieve the optimum cost effective design. This is contrasted with the situations which could arise if noise control we
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27

Chen, Aiyong. "Digital Filtering Technology in Industrial Measuring and Control System." Electronics Science Technology and Application 2 (December 3, 2015): 42. http://dx.doi.org/10.18686/esta.v2i1.8.

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<p>This article aims at the technical problems in modernized industrial measuring and control system such as interruption signal, noise signal and other useless signal. First introduces the features and importance of digital filtering technology and then elaborates on the realization methods of digital filtering and frequently used digital filtering calculation methods in the industrial measuring system. The research reveals that integrated usage of numerous methods or even complex digital filtering technology is adopted to calculate and treat such digital signals like random interruptio
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28

Song, Eun-Sung, Young-Jun Lim, and Bongju Kim. "A User-Specific Approach for Comfortable Application of Advanced 3D CAD/CAM Technique in Dental Environments Using the Harmonic Series Noise Model." Applied Sciences 9, no. 20 (2019): 4307. http://dx.doi.org/10.3390/app9204307.

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Recently, there has been a focus on improving the user’s emotional state by providing high-quality sound beyond noise reduction against industrial product noise. Three-dimensional computer aided design and computer-aided manufacturing (3D CAD/CAM) dental milling machines are a major source of industrial product noise in the dental environment. Here, we propose a noise-control method to improve the sound quality in the dental environment. Our main goals are to analyze the acoustic characteristics of the sounds generated from the dental milling machine, to control the noise by active noise contr
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29

Hamada, Hareo. "Active Noise Control Aimed Harmony Between Hummand and Environment. I. Fundamental Technique of Active Noise Control." IEEJ Transactions on Industry Applications 111, no. 10 (1991): 814–18. http://dx.doi.org/10.1541/ieejias.111.814.

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30

Eriksson, L. J. "Active Noise Control Aimed Harmony Between Hummand and Environment. II. Recursive Algorithms for Active Noise Control." IEEJ Transactions on Industry Applications 111, no. 10 (1991): 819–22. http://dx.doi.org/10.1541/ieejias.111.819.

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31

Wood, Eric W. "Laymon N. Miller—Contributions to industrial and community noise control." Journal of the Acoustical Society of America 137, no. 4 (2015): 2218. http://dx.doi.org/10.1121/1.4920079.

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32

Cops, A. "Absorption properties of baffles for noise control in industrial halls." Applied Acoustics 18, no. 6 (1985): 435–48. http://dx.doi.org/10.1016/0003-682x(85)90023-4.

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33

Liu, Mei, Jiachang Li, Ying Liufu, Wenhui Duan, Xiuchun Xiao, and Long Jin. "Noise-rejection zeroing dynamics for control of industrial agitator tank." Nonlinear Dynamics 103, no. 3 (2021): 2581–603. http://dx.doi.org/10.1007/s11071-021-06233-5.

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34

Bulkin, V. V., and I. N. Kirillov. "Environmentally-Atmospherical Monitoring of Industrial Machine Builder State." Applied Mechanics and Materials 770 (June 2015): 686–89. http://dx.doi.org/10.4028/www.scientific.net/amm.770.686.

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In the article is considered the system of monitoring of acoustic pollution of the local industrial areas, providing noise control and prediction of the nature of its distribution in the local industrial zone and into the residential area. The system of control includes the control channel of the level of acoustic noise (passive channel), the channel for receiving the meteorological information (active channel), the system of data processing and forecasting.
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35

Kuo, Sen M., Sreeram R. Chakravarthy, Rakesh Gireddy, and Abhijit Gupta. "Active snore noise control systems." Noise Control Engineering Journal 56, no. 1 (2008): 16. http://dx.doi.org/10.3397/1.2826409.

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36

Bies, David A., Colin H. Hansen, and Tim Kelsall. "Engineering Noise Control, Fourth Edition." Noise Control Engineering Journal 58, no. 4 (2010): 465. http://dx.doi.org/10.3397/1.3455051.

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37

Lang, William. "A global approach to noise control policy; Part 2: Occupational noise." Noise Control Engineering Journal 54, no. 5 (2006): 298. http://dx.doi.org/10.3397/1.2338344.

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38

Lang, William. "A global approach to noise control policy; Part 3: Community noise." Noise Control Engineering Journal 54, no. 5 (2006): 309. http://dx.doi.org/10.3397/1.2338345.

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39

Deželak, Ferdinand. "Effective noise control through identification and ranking of incoherent noise sources." Noise Control Engineering Journal 58, no. 2 (2010): 212. http://dx.doi.org/10.3397/1.3322185.

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40

FOLLECO, ANDRES, and TAGHI KHOSHGOFTAAR. "ATTRIBUTE NOISE DETECTION USING MULTI-RESOLUTION ANALYSIS." International Journal of Reliability, Quality and Safety Engineering 13, no. 03 (2006): 267–88. http://dx.doi.org/10.1142/s0218539306002252.

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The value of knowledge inferred from information databases is critically dependent on the quality of data. The identification of noisy attributes which can easily corrupt and curtail valuable knowledge and information from a dataset can be very helpful to analysts. We present a novel detection method to identify noisy attributes in datasets of software metrics using multi-resolution transformations based on Discrete Wavelet Transforms. The proposed method has been applied to supervised datasets of scientific full-scale data from NASA's Software Metric Data Program (MDP) and to a military comma
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41

Martin, Sergey V., Ivan N. Kudryashov, and Maksim A. Ivashchenko. "Practical aspects of occupational risk assessment from industrial noise exposure." Russian Journal of Occupational Health and Industrial Ecology 60, no. 11 (2020): 824–26. http://dx.doi.org/10.31089/1026-9428-2020-60-11-824-826.

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Introduction. Today, there is an active application of the occupational risk assessment approach in hygiene practice. In particular, the employer is required to assess the risk of exceeding the production noise limit. The aim of study is to identify issues related to the performance of work on the assessment of occupational risk from noise exposure, based on practical experience. Materials and methods. The assessment of the probability of adverse effects on the health of specific individuals employed in more than a thousand jobs in various branches of Russian industry allows us to identify a n
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42

Murzinov, Valery, Pavel Murzinov, Yury Murzinov, and Sergey Popov. "REDUCING THE AERODYNAMIC NOISE GENERATED BY A PNEUMATIC CONVEYOR USING THE ADAPTIVE SYSTEM OF AIR CUSHION THICKNESS CONTROL." VOLUME 39, VOLUME 39 (2021): 108. http://dx.doi.org/10.36336/akustika202139108.

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The article describes the sources of aerodynamic noise generated inside an air cushion as applicable to industrial conveyor systems. The relationship between aerodynamic noise level and the air-space thickness is shown. The method of stabilizing the airspace thickness is proposed to reduce the level of aerodynamic noise.
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43

Aliev, T. A., N. F. Musaeva, and B. I. Gazizade. "Technologies for Monitoring the Dynamics of Damage Development in Drilling Rigs Using High-Order Moments of the Noise." Mekhatronika, Avtomatizatsiya, Upravlenie 21, no. 4 (2020): 213–23. http://dx.doi.org/10.17587/mau.21.213-223.

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The paper deals with the development of algorithms for calculating the high-order moments of the noise of noisy signals and their use in the analysis of the technical condition of industrial facilities. It is shown that for monitoring and controlling the onset of an emergency at oil production facilities, random vibration signals are used, which, in addition to the noise caused by external factors at the time of the initiation of the malfunction, also contain additional noise. The characteristics of this noise contain certain information about the technical condition of the drilling rig. Earli
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44

Evans, Jack B. "Engine Test Cell Noise Emission Design with Performance Validation Results." Journal of Low Frequency Noise, Vibration and Active Control 21, no. 4 (2002): 207–18. http://dx.doi.org/10.1260/026309202321834654.

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An existing industrial test facility was proposed to be relocated from a plant site in a high ambient noise environment to a community with low ambient noise. The existing facility contained engine test cells and support equipment with loud noise emissions. The original location was in an industrial park, adjacent to a high-speed multi-lane divided highway, but residential communities were nearby. Few noise complaints had been received at the existing location. The proposed future site was in a semi-rural area, near a two lane, moderate speed roadway. Although some moderate environmental noise
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45

Gabbert, Ulrich, Fabian Duvigneau, and Stefan Ringwelski. "NOISE CONTROL OF VEHICLE DRIVE SYSTEMS." Facta Universitatis, Series: Mechanical Engineering 15, no. 2 (2017): 183. http://dx.doi.org/10.22190/fume170615009g.

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The paper presents an overall simulation approach to control the noise emission of car engines at a very early stage of the design process where no real prototypes are available. The suggested approach combines different physical models and couples different software tools such as multi-body analysis, fluid dynamics, structural mechanics, magneto-electrodynamics, thermodynamics, acoustics and control as well. The general overall simulation methodology is presented first. Then, this methodology is applied to a combustion engine in order to improve its acoustical behavior by passive means, such
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46

Lang, William. "A global approach to noise control policy; Part 4: Consumer product noise." Noise Control Engineering Journal 54, no. 5 (2006): 336. http://dx.doi.org/10.3397/1.2338346.

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47

Liu, Ningning, Yuedong Sun, Yansong Wang, et al. "Active control for vehicle interior noise using the improved iterative variable step-size and variable tap-length LMS algorithms." Noise Control Engineering Journal 67, no. 6 (2019): 405–14. http://dx.doi.org/10.3397/1/376737.

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Active noise control (ANC) is used to reduce undesirable noise, particularly at low frequencies. There are many algorithms based on the least mean square (LMS) algorithm, such as the filtered-x LMS (FxLMS) algorithm, which have been widely used for ANC systems. However, the LMS algorithm cannot balance convergence speed and steady-state error due to the fixed step size and tap length. Accordingly, in this article, two improved LMS algorithms, namely, the iterative variable step-size LMS (IVS-LMS) and the variable tap-length LMS (VT-LMS), are proposed for active vehicle interior noise control.
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48

Aluclu, I., A. Dalgic, and Z. F. Toprak. "A fuzzy logic-based model for noise control at industrial workplaces." Applied Ergonomics 39, no. 3 (2008): 368–78. http://dx.doi.org/10.1016/j.apergo.2007.08.005.

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49

Finegold, Lawrence S., Henning E. von Gierke, Paul D. Schomer, and Bernard F. Berry. "Proposal for monitoring worldwide noise exposure and assessing the effectiveness of noise exposure policies and noise control technologies." Noise Control Engineering Journal 49, no. 4 (2001): 199. http://dx.doi.org/10.3397/1.2839660.

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50

Anderson, Robert R. "Industrial noise control engineering principles and standard practices applicable to engineers and industrial hygienists." Journal of the Acoustical Society of America 119, no. 5 (2006): 3263. http://dx.doi.org/10.1121/1.2174503.

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