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1

Turmel, André. "Folie, épidémie et institution; contrôle et régulation sociale de l'enfance." Critique 34, no. 1 (2005): 111–27. http://dx.doi.org/10.7202/056740ar.

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L'auteur soulève, à partir de deux ouvrages d'historiens, l'un sur la folie au Québec, l'autre sur une épidémie de variole à Montréal, la question de 1'institution. Outre le flou conceptuel qui existe autour de celle-ci, se pose le problème de sa fonction. Est-elle d'abord vouée au contrôle social et si oui, quel type de conduite cherche-t-elle à contrôler? Une distinction est introduite entre le contrôle et la régulation des conduites, dans le cadre de l'émergence du concept de normalité.
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2

Abry, Nicolas. "The Woodcutter As the Living Force of a Homer’s Cyber-Brain, Still Incognito." IRIS, no. 36 (June 30, 2015): 121–38. http://dx.doi.org/10.35562/iris.1595.

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Il est assez commun de se représenter le bûcheron comme un être plutôt fruste, qualifié avant tout par sa force au service d’une tâche peu valorisée. Or cette représentation se révèle tronquée, car l’équation qui associe la force à l’outil ne peut se réaliser sans le contrôle du geste. Plus encore, l’écoute des témoignages recueillis auprès des forestiers nous apprend que ce travail réclame d’efficaces systèmes de précision. C’est là une qualification oubliée, pourtant reconnue à part entière dès l’Iliade, qui nous en donne deux témoins privilégiés par l’anthropologie historique de la Grèce, l
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3

Abry, Nicolas. "The Woodcutter As the Living Force of a Homer’s Cyber-Brain, Still Incognito." IRIS, no. 36 (June 30, 2015): 121–38. http://dx.doi.org/10.35562/iris.1595.

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Il est assez commun de se représenter le bûcheron comme un être plutôt fruste, qualifié avant tout par sa force au service d’une tâche peu valorisée. Or cette représentation se révèle tronquée, car l’équation qui associe la force à l’outil ne peut se réaliser sans le contrôle du geste. Plus encore, l’écoute des témoignages recueillis auprès des forestiers nous apprend que ce travail réclame d’efficaces systèmes de précision. C’est là une qualification oubliée, pourtant reconnue à part entière dès l’Iliade, qui nous en donne deux témoins privilégiés par l’anthropologie historique de la Grèce, l
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4

Heddam, Salim, Abdelmalek Bermad, and Noureddine Dechemi. "Modélisation de la dose de coagulant par les systèmes à base d’inférence floue (ANFIS) application à la station de traitement des eaux de Boudouaou (Algérie)." Revue des sciences de l’eau 25, no. 1 (2012): 1–17. http://dx.doi.org/10.7202/1008532ar.

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La coagulation est l’une des étapes les plus importantes dans le traitement des eaux. La difficulté principale est de déterminer la dose optimale de coagulant à injecter en fonction des caractéristiques de l’eau brute. Un mauvais contrôle de ce procédé peut entraîner une augmentation importante des coûts de fonctionnement et le non-respect des objectifs de qualité en sortie de la station de traitement. Le sulfate d’aluminium (Al2SO4.18H2O) est le réactif coagulant le plus généralement utilisé. La détermination de la dose de coagulant se fait au moyen de l’essai dit de « Jar Test » conduit en l
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5

Vibet, C. "Introduction Au Contrôle Par Logique Floue." International Journal of Electrical Engineering & Education 31, no. 3 (1994): 237–51. http://dx.doi.org/10.1177/002072099403100306.

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An introduction to fuzzy logic control The paper presents an introduction to fuzzy logic control through the pollution control problem of internal combustion engines. The fuzzy sets and variables are next defined and applied to design the controller of an inverted pendulum on a moving car. This example allows us also to illustrate the inference concept of triangular fuzzy functions which is based on the Min-Max Centre-of-gravity rule.
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6

Raghu, S., J. W. Gregory, and J. P. Sullivan. "Modulated High Frequency Fluidic Actuators For Flow Control(Flow Control 2)." Proceedings of the International Conference on Jets, Wakes and Separated Flows (ICJWSF) 2005 (2005): 465–69. http://dx.doi.org/10.1299/jsmeicjwsf.2005.465.

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7

Sonnenberger, R. J., C. N. Nayeri, H. H. Fernholz, and C. O. Paschereit. "Active control of the separated flow behind a fence(Flow Control 1)." Proceedings of the International Conference on Jets, Wakes and Separated Flows (ICJWSF) 2005 (2005): 375–77. http://dx.doi.org/10.1299/jsmeicjwsf.2005.375.

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8

Martel, J. L. "Compostage industriel et contrôle qualité." Techniques Sciences Méthodes, no. 9 (2009): 56–59. http://dx.doi.org/10.1051/tsm/200909056.

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9

Bergue, J. M., J. C. Bruyelle, C. Joannis, R. Le Besq, F. Raymond, and C. Zaetta. "Contrôle des branchements à l’assainissement." Techniques Sciences Méthodes, no. 10 (2013): 47–56. http://dx.doi.org/10.1051/tsm/201310047.

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10

YAMAMOTO, Hideaki, Noriyuki NAKANO, Masahiro WATANABE, and Kensuke HARA. "2D21 Active Feedback Control of a Leakage-Flow-Induced Vibration of Translational 1DOF System by Flow Control." Proceedings of the Symposium on the Motion and Vibration Control 2010 (2010): _2D21–1_—_2D21–16_. http://dx.doi.org/10.1299/jsmemovic.2010._2d21-1_.

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11

Sasaki, Tatsuya, and Nobuo Ogawa. "OPTICAL CONTROL OF JETS BY RADIATION PRESSURE(Flow Control 2)." Proceedings of the International Conference on Jets, Wakes and Separated Flows (ICJWSF) 2005 (2005): 483–88. http://dx.doi.org/10.1299/jsmeicjwsf.2005.483.

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12

Lawson, Nicholas J., Mauro P. Arruda, and Malcolm R. Davidson. "CONTROL OF AN OSCILLATORY RECTANGULAR CAVITY JET FLOW BY SECONDARY INJECTION(Cavity Flow and Pulsating Flow)." Proceedings of the International Conference on Jets, Wakes and Separated Flows (ICJWSF) 2005 (2005): 561–65. http://dx.doi.org/10.1299/jsmeicjwsf.2005.561.

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13

Voutsinas, Alexandros, Toshihiko Shakouchi, Junichi Takamura, Koichi Tsujimoto, and Toshitake Ando. "FLOW AND CONTROL OF VERTICAL UPWARD GAS-LIQUID TWO-PHASE FLOW THROUGH SUDDEN CONTRACTION PIPE(Multiphase Flow 2)." Proceedings of the International Conference on Jets, Wakes and Separated Flows (ICJWSF) 2005 (2005): 307–12. http://dx.doi.org/10.1299/jsmeicjwsf.2005.307.

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14

Aung, Thae Thae Ei, and Zar Chi Soe. "Liquid Flow Control by Using Fuzzy Logic Controller." International Journal of Trend in Scientific Research and Development Volume-2, Issue-5 (2018): 2190–93. http://dx.doi.org/10.31142/ijtsrd18263.

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15

Tatsuya, Ishii, Enomoto Shunji, Nakamura Satoru, and Ishikawa Hitoshi. "1172 JET FLOW CONTROL USING A CLAW MIXER." Proceedings of the International Conference on Jets, Wakes and Separated Flows (ICJWSF) 2013.4 (2013): _1172–1_—_1172–6_. http://dx.doi.org/10.1299/jsmeicjwsf.2013.4._1172-1_.

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16

HASEGAWA, Hiroaki, Yukihiro SAWADA, and Kazuo MATSUUCHI. "ACTIVE SEPARATION CONTROL USING VORTEX GENERATOR JETS WITH TRIANGULAR ORIFICES(Flow Control 1)." Proceedings of the International Conference on Jets, Wakes and Separated Flows (ICJWSF) 2005 (2005): 363–68. http://dx.doi.org/10.1299/jsmeicjwsf.2005.363.

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17

Imazeki, Masami, Naoyuki Hasegawa, Kazuyuki Yamamoto, and Koichi Hishida. "NEURAL NETWORK CONTROL OF TEMPERATURE PROFILE BY IMPINGING JET ARRAYS(Flow Control 1)." Proceedings of the International Conference on Jets, Wakes and Separated Flows (ICJWSF) 2005 (2005): 379–84. http://dx.doi.org/10.1299/jsmeicjwsf.2005.379.

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18

Miyagi, Norimasa, Kohei Hodoya, Hajime Fujita, Hideo Shoji, and Motoaki Kimura. "Study of Active Jet Control by Acoustically driven Secondary Film Flow : Influence of Velocity Ratio and Acoustic Strouhal Number(Flow Control 2)." Proceedings of the International Conference on Jets, Wakes and Separated Flows (ICJWSF) 2005 (2005): 459–64. http://dx.doi.org/10.1299/jsmeicjwsf.2005.459.

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19

Paschereit, C. O., and B. Schuermans. "Combustion instability suppression by active control of the burner mixing profile(Flow Control 1)." Proceedings of the International Conference on Jets, Wakes and Separated Flows (ICJWSF) 2005 (2005): 369–74. http://dx.doi.org/10.1299/jsmeicjwsf.2005.369.

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20

DUMITRACHE, Alexandru, Florin FRUNZULICA, Horia DUMITRESCU, and Tudor IONESCU. "FLOW CONTROL INVESTIGATION USING THE COANDA EFFECT ON AIRFOILS." SCIENTIFIC RESEARCH AND EDUCATION IN THE AIR FORCE 21, no. 1 (2019): 126–34. http://dx.doi.org/10.19062/2247-3173.2019.21.18.

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21

Yoshida, Takashi, Takashi Watanabe, Toshihiko Ikeda, and Syouichiro Iio. "NUMERICAL ANALYSIS OF CONTROL OF FLOW OSCILLATIONS IN AN OPEN CAVITY BY A MOVING BOTTOM WALL(Cavity Flow and Pulsating Flow)." Proceedings of the International Conference on Jets, Wakes and Separated Flows (ICJWSF) 2005 (2005): 551–56. http://dx.doi.org/10.1299/jsmeicjwsf.2005.551.

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22

Keimer, Alexander, and Alexandre Bayen. "Routing on Traffic Networks Incorporating Past Memory up to Real-Time Information on the Network State." Annual Review of Control, Robotics, and Autonomous Systems 3, no. 1 (2020): 151–72. http://dx.doi.org/10.1146/annurev-control-091319-125444.

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In this review, we discuss routing algorithms for the dynamic traffic assignment (DTA) problem that assigns traffic flow in a given road network as realistically as possible. We present a new class of so-called routing operators that route traffic flow at intersections based on either real-time information about the status of the network or historical data. These routing operators thus cover the distribution of traffic flow at all possible intersections. To model traffic flow on the links, we use a well-known macroscopic ordinary delay differential equation. We prove the existence and uniquene
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23

Micheten, Marcos Vinicius Colcheski, and Isabela Leticia Pessenti. "Extratos vegetais no controle de brevicoryne brassicae nas brassicáceas." Research, Society and Development 10, no. 3 (2021): e57710313681. http://dx.doi.org/10.33448/rsd-v10i3.13681.

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Neste projeto foi efetuado os testes dos compostos aquosos com extrato de fumo com álcool (Nicotiana tabacum), extrato de mamona (Ricinus communis), extrato das folhas da árvore kassod (Senna siamea), para o controle do pulgão no cultivo orgânico do brócolis (Brassica oleracea var. italica) e da couve flor (Brassica oleracea var. botrytis). Onde foi realizado no interior de Reserva/PR. Foi efetivado o teste de três canteiros com 12 plantas de brócolis com o extrato de fumo com álcool, três canteiros com o extrato de mamona, e três canteiro com o extrato de mamona, três canteiro com o extrato d
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24

Choi, Ji-Won, Soon-Hyeong Park, and Kwon-Hee Lee. "Flow Coefficient Measurement of a Globe Valve for Precision Control." International Journal of Materials, Mechanics and Manufacturing 6, no. 4 (2018): 260–63. http://dx.doi.org/10.18178/ijmmm.2018.6.4.387.

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25

MADOŠ, Branislav, Ján HURTUK, Marek ČAJKOVSKÝ, and Erik KUDRA. "VISUAL PROGRAMMING TOOL FOR COMPUTER WITH DATA FLOW COMPUTATION CONTROL." Acta Electrotechnica et Informatica 14, no. 4 (2014): 27–30. http://dx.doi.org/10.15546/aeei-2014-0037.

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26

Abdeslam, El Kartouti, Sidi Mohamed Hannafi, and My Ahmed Hachimi. "The Flow Error in Drug Delivery in Anesthesia: Prevention and Controle." Saudi Journal of Medicine 5, no. 7 (2020): 276–79. http://dx.doi.org/10.36348/sjm.2020.v05i07.001.

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27

Issalys, Pierre. "La régulation par un organisme administratif autonome comme modèle de contrôle et de participation." Les Cahiers de droit 24, no. 4 (2005): 831–900. http://dx.doi.org/10.7202/042572ar.

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In this paper, the control and participative functions of the public administration are viewed as a two-way stream of information. More specifically, this model is applied to regulatory agencies in Canada and Québec. The downward, control-oriented flow and the upward, participative flow of information are both traced by means of an analysis of the key elements in the legal and administrative structure of regulatory agencies. Specific illustrations are drawn mainly from the field of energy regulation in Canada and Québec. Examination of the model in this context suggests that efficiency in the
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28

Pernet, Nicolas, and Yves Sorel. "Transformations de spécifications incluant du contrôle en spécification flot de données pour implantation distribuée." Journal Européen des Systèmes Automatisés 39, no. 1-3 (2005): 32–46. http://dx.doi.org/10.3166/jesa.39.32-46.

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29

Plonka, Leslaw, and Korneliusz Miksch. "ANN-Based Short-Term Wastewater Flow Prediction for Better WWTP Control." Chemistry and Chemical Technology 4, no. 2 (2010): 159–62. http://dx.doi.org/10.23939/chcht04.02.159.

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This paper presents an approach to predict the amount of the wastewater which enters wastewater treatment plant, using artificial neural network. The method presented can be used to give short-term predictions of wastewater inflow-rate. The described neural network model uses a very tiny set of data commonly collected by WWTP control systems.
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30

Choi, Kwing-So. "10301 Drag Reduction by Spanwise Flow Control of Near-Wall Turbulence." Proceedings of Conference of Kanto Branch 2005.11 (2005): 127–30. http://dx.doi.org/10.1299/jsmekanto.2005.11.127.

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31

Judel, C., G. Nicolaos, A. Fabreguettes, and G. Husson. "Contrôles d’un réseau d’eau en milieu hospitalier." Techniques Sciences Méthodes, no. 6 (2008): 73–79. http://dx.doi.org/10.1051/tsm/200806073.

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32

SUMIDA, Masaru. "NUMERICAL STUDY OF FLUID MOTION IN THE ENTRANCE REGION OF A STRAIGHT TUBE DURING OSCILLATORY FLOW(Flow Control 2)." Proceedings of the International Conference on Jets, Wakes and Separated Flows (ICJWSF) 2005 (2005): 471–76. http://dx.doi.org/10.1299/jsmeicjwsf.2005.471.

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33

Zare, A., T. T. Georgiou, and M. R. Jovanović. "Stochastic Dynamical Modeling of Turbulent Flows." Annual Review of Control, Robotics, and Autonomous Systems 3, no. 1 (2020): 195–219. http://dx.doi.org/10.1146/annurev-control-053018-023843.

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Advanced measurement techniques and high-performance computing have made large data sets available for a range of turbulent flows in engineering applications. Drawing on this abundance of data, dynamical models that reproduce structural and statistical features of turbulent flows enable effective model-based flow control strategies. This review describes a framework for completing second-order statistics of turbulent flows using models based on the Navier–Stokes equations linearized around the turbulent mean velocity. Dynamical couplings between states of the linearized model dictate structura
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34

TAKADA, Shoji, Atsuhiko SHINTANI, Tomohiro ITO, and Katsuhisa FUJITA. "2D25 Active Control of Annular Flow-induced Vibration of Axisymmetric Elastic Beam by the Local Gap Width Control." Proceedings of the Symposium on the Motion and Vibration Control 2010 (2010): _2D25–1_—_2D25–12_. http://dx.doi.org/10.1299/jsmemovic.2010._2d25-1_.

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35

Ye, Jianwei, Jie Xu, Xulu Jiao, and Zhikai Xu. "Protecting Cloud Data Using the Decentralized Information Flow Control with Authorization Condition." International Journal of Machine Learning and Computing 5, no. 3 (2015): 230–34. http://dx.doi.org/10.7763/ijmlc.2015.v5.512.

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36

Xie, Xin, Fenlin Liu, Bin Lu, and Fei Xiang. "An Iteration Obfuscation Based on Instruction Fragment Diversification and Control Flow Randomization." International Journal of Computer Theory and Engineering 8, no. 4 (2016): 303–12. http://dx.doi.org/10.7763/ijcte.2016.v8.1063.

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37

Ukida, Takahiro, Koichi Suzumori, Hiroyuki Nabae, Takefumi Kanda, and Shoki Ofuji. "A small water flow control valve using particle excitation by PZT vibrator." Abstracts of the international conference on advanced mechatronics : toward evolutionary fusion of IT and mechatronics : ICAM 2015.6 (2015): 221–22. http://dx.doi.org/10.1299/jsmeicam.2015.6.221.

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38

Gutmark, E., B. Callender, and S. Martens. "Aeroacoustics of Turbulent Jets : Flow Structure, Noise Sources, and Control(Keynote Lecture)." Proceedings of the International Conference on Jets, Wakes and Separated Flows (ICJWSF) 2005 (2005): 35–44. http://dx.doi.org/10.1299/jsmeicjwsf.2005.35.

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39

IIO, Shouichiro, Takayuki KAWAMURA, Masaharu MATSUBARA, Takashi YOSHIDA, and Toshihiko IKEDA. "VORTEX BEHAVIOR OF PULSATING JETS FROM A RECTANGULAR NOZZLE(Flow Control 2)." Proceedings of the International Conference on Jets, Wakes and Separated Flows (ICJWSF) 2005 (2005): 477–82. http://dx.doi.org/10.1299/jsmeicjwsf.2005.477.

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40

Kento, Fujii, and Tsunoda Hiroyuki. "1059 NUMERICAL STUDY ON OSCILLATORY CONTROL IN A FLIP-FLOP NOZZLE JET." Proceedings of the International Conference on Jets, Wakes and Separated Flows (ICJWSF) 2013.4 (2013): _1059–1_—_1059–5_. http://dx.doi.org/10.1299/jsmeicjwsf.2013.4._1059-1_.

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41

Savla, Ketan, Jeff S. Shamma, and Munther A. Dahleh. "Network Effects on the Robustness of Dynamic Systems." Annual Review of Control, Robotics, and Autonomous Systems 3, no. 1 (2020): 115–49. http://dx.doi.org/10.1146/annurev-control-091219-012549.

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We review selected results related to the robustness of networked systems in finite and asymptotically large size regimes in static and dynamical settings. In the static setting, within the framework of flow over finite networks, we discuss the effect of physical constraints on robustness to loss in link capacities. In the dynamical setting, we review several settings in which small-gain-type analysis provides tight robustness guarantees for linear dynamics over finite networks toward worst-case and stochastic disturbances. We discuss network flow dynamic settings where nonlinear techniques fa
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42

Aires, N., and E. Cavailles. "Les techniques de contrôle des flux polluants dès la source du ruissellement." Techniques Sciences Méthodes, no. 6 (2009): 69–76. http://dx.doi.org/10.1051/tsm/200906069.

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43

Poltronieri Sampaio, Leonardo, Moacyr Aureliano Gomes de Brito, Guilherme de Azevedo e Melo, and Carlos Alberto Canesin. "Grid-tie Three-phase Inverter With Active And Reactive Power Flow Control Capability." Eletrônica de Potência 19, no. 4 (2014): 397–405. http://dx.doi.org/10.18618/rep.2014.4.397405.

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44

Aulicky, R., V. Stejskal, M. Dlouhy, and J. Liskova. "Validation of hydrogen cyanide fumigation in flourmills to control the confused flour beetle." Czech Journal of Food Sciences 33, No. 2 (2016): 174–79. http://dx.doi.org/10.17221/303/2014-cjfs.

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45

Takashi, Matsuno, Maeda Kengo, Fujita Noboru, et al. "1197 ON THE MECHANISM OF BLUFF BODY FLOW CONTROL BY PULSED PLASMA ACTUATOR." Proceedings of the International Conference on Jets, Wakes and Separated Flows (ICJWSF) 2013.4 (2013): _1197–1_—_1197–6_. http://dx.doi.org/10.1299/jsmeicjwsf.2013.4._1197-1_.

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46

Kozo, Fujii. "IL03 RECENT FINDINGS ON THE MECHANISM OF FLOW SEPARATION CONTROL BY MICRO DEVICES." Proceedings of the International Conference on Jets, Wakes and Separated Flows (ICJWSF) 2013.4 (2013): _IL03–1_—_IL03–4_. http://dx.doi.org/10.1299/jsmeicjwsf.2013.4._il03-1_.

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47

Takehiko, Segawa, and Matsunuma Takayuki. "IL10 ACTIVE FLOW CONTROL ON TURBINE BLADES BY DIELECTRIC BARRIER DISCHARGE PLASMA ACTUATORS." Proceedings of the International Conference on Jets, Wakes and Separated Flows (ICJWSF) 2013.4 (2013): _IL10–1_—_IL10–10_. http://dx.doi.org/10.1299/jsmeicjwsf.2013.4._il10-1_.

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48

Coconi, J., and T. Martinon. "De l’autosurveillance du système d’assainissement au contrôle de la qualité du milieu récepteur." Techniques Sciences Méthodes, no. 4 (2013): 69–74. http://dx.doi.org/10.1051/tsm/201304069.

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49

HAYASHI, Yusuke, Masahiro WATANABE, and Kensuke HARA. "59168 Numerical Simulation of an Active Feedback Control of Web Flutter by Using Flow Control Devices(Fluid-Structure Interaction in MBS)." Proceedings of the Asian Conference on Multibody Dynamics 2010.5 (2010): _59168–1_—_59168–9_. http://dx.doi.org/10.1299/jsmeacmd.2010.5._59168-1_.

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50

Ma, Chao-Tsung, and Tzung-Han Shr. "Power Flow Control of Renewable Energy Based Distributed Generators Using Advanced Power Converter Technologies." Journal of Clean Energy Technologies 3, no. 1 (2015): 48–53. http://dx.doi.org/10.7763/jocet.2015.v3.167.

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