Auswahl der wissenschaftlichen Literatur zum Thema „Chenův systém“

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Zeitschriftenartikel zum Thema "Chenův systém"

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ZHANG, HONGBIN, CHUNGUANG LI, GUANRONG CHEN und XING GAO. „HYPERCHAOS IN THE FRACTIONAL-ORDER NONAUTONOMOUS CHEN'S SYSTEM AND ITS SYNCHRONIZATION“. International Journal of Modern Physics C 16, Nr. 05 (Mai 2005): 815–26. http://dx.doi.org/10.1142/s0129183105007510.

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Recently, a new hyperchaos generator, obtained by controlling a three-dimensional autonomous chaotic system — Chen's system — with a periodic driving signal, has been found. In this letter, we formulate and study the hyperchaotic behaviors in the corresponding fractional-order hyperchaotic Chen's system. Through numerical simulations, we found that hyperchaos exists in the fractional-order hyperchaotic Chen's system with order less than 4. The lowest order we found to have hyperchaos in this system is 3.4. Finally, we study the synchronization problem of two fractional-order hyperchaotic Chen's systems.
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GUAN, ZHI-HONG, RUI-QUAN LIAO, FENG ZHOU und HUA O. WANG. „ON IMPULSIVE CONTROL AND ITS APPLICATION TO CHEN'S CHAOTIC SYSTEM“. International Journal of Bifurcation and Chaos 12, Nr. 05 (Mai 2002): 1191–97. http://dx.doi.org/10.1142/s0218127402005030.

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In this paper, impulsive control of nonlinear systems and its application to Chen's chaotic system are considered. A new impulsive control method for chaos suppression, using Chen's system as an example, is developed. Some new general criteria for exponential stability and asymptotical stability of nonlinear impulsive systems are established and, particularly, some simple conditions sufficient for driving the chaotic state of Chen's system to its zero equilibrium are presented.
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Zhou, Tianshou, Yun Tang und Guanrong Chen. „Complex Dynamical Behaviors of the Chaotic Chen's System“. International Journal of Bifurcation and Chaos 13, Nr. 09 (September 2003): 2561–74. http://dx.doi.org/10.1142/s0218127403008089.

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In this paper, the complex dynamical behaviors of the chaotic trajectories of Chen's system are analyzed in detail, with its precise bound derived for the first time. In particular, it is rigorously proved that all nontrivial trajectories of the system always travel alternatively through two specific Poincaré projections for infinitely many times. The results provide an insightful understanding of the complex topological structure of Chen's chaotic attractor.
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Li, Changpin, und Guanrong Chen. „A Note on Hopf Bifurcation in Chen's System“. International Journal of Bifurcation and Chaos 13, Nr. 06 (Juni 2003): 1609–15. http://dx.doi.org/10.1142/s0218127403007394.

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UETA, TETSUSHI, und GUANRONG CHEN. „BIFURCATION ANALYSIS OF CHEN'S EQUATION“. International Journal of Bifurcation and Chaos 10, Nr. 08 (August 2000): 1917–31. http://dx.doi.org/10.1142/s0218127400001183.

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Anticontrol of chaos by making a nonchaotic system chaotic has led to the discovery of some new chaotic systems, particularly the continuous-time three-dimensional autonomous Chen's equation with only two quadratic terms. This paper further investigates some basic dynamical properties and various bifurcations of Chen's equation, thereby revealing its different features from some other chaotic models such as its origin, the Lorenz system.
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ZHOU, TIANSHOU, YUN TANG und GUANRONG CHEN. „CHEN'S ATTRACTOR EXISTS“. International Journal of Bifurcation and Chaos 14, Nr. 09 (September 2004): 3167–77. http://dx.doi.org/10.1142/s0218127404011296.

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By applying the undetermined coefficient method, this paper finds homoclinic and heteroclinic orbits in the Chen system. It analytically demonstrates that the Chen system has one heteroclinic orbit of Ši'lnikov type that connects two nontrivial singular points. The Ši'lnikov criterion guarantees that the Chen system has Smale horseshoes and the horseshoe chaos. In addition, there also exists one homoclinic orbit joined to the origin. The uniform convergence of the series expansions of these two types of orbits are proved in this paper. It is shown that the heteroclinic and homoclinic orbits together determine the geometric structure of Chen's attractor.
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Haeri, Mohammad, und Mahsa Dehghani. „Impulsive synchronization of Chen's hyperchaotic system“. Physics Letters A 356, Nr. 3 (August 2006): 226–30. http://dx.doi.org/10.1016/j.physleta.2006.03.051.

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GAO, TIEGANG, ZENGQIANG CHEN, ZHUZHI YUAN und GUANRONG CHEN. „A HYPERCHAOS GENERATED FROM CHEN'S SYSTEM“. International Journal of Modern Physics C 17, Nr. 04 (April 2006): 471–78. http://dx.doi.org/10.1142/s0129183106008625.

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This paper presents a new hyperchaotic system, obtained by adding a controller to the second equation of the three-dimensional autonomous Chen's chaotic system. The hyper-chaos system undergoes a change from hyperchaos to limit cycle when the parameter varies. The system is not only demonstrated by computer simulations but also verified with bifurcation analysis.
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LI, TIECHENG, GUOTING CHEN und GUANRONG CHEN. „ON HOMOCLINIC AND HETEROCLINIC ORBITS OF CHEN'S SYSTEM“. International Journal of Bifurcation and Chaos 16, Nr. 10 (Oktober 2006): 3035–41. http://dx.doi.org/10.1142/s021812740601663x.

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We study the problem of existence of homoclinic and heteroclinic orbits of Chen's system. For the case of 2c > a > c > 0 and b ≥ 2a, we prove that the system has no homoclinic orbit but has two and only two heteroclinic orbits.
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Ariesanu, Camelia Pop, und Camelia Petrisor. „A Geometric Approach of the Chen's System“. IFAC Proceedings Volumes 45, Nr. 2 (2012): 288–92. http://dx.doi.org/10.3182/20120215-3-at-3016.00050.

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Dissertationen zum Thema "Chenův systém"

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Šustková, Apolena. „Řešení obyčejných diferenciálních rovnic neceločíselného řádu metodou Adomianova rozkladu“. Master's thesis, Vysoké učení technické v Brně. Fakulta strojního inženýrství, 2021. http://www.nusl.cz/ntk/nusl-445455.

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This master's thesis deals with solving fractional-order ordinary differential equations by the Adomian decomposition method. A part of the work is therefore devoted to the theory of equations containing differential operators of non-integer order, especially the Caputo operator. The next part is devoted to the Adomian decomposition method itself, its properties and implementation in the case of Chen system. The work also deals with bifurcation analysis of this system, both for integer and non-integer case. One of the objectives is to clarify the discrepancy in the literature concerning the fractional-order Chen system, where experiments based on the use of the Adomian decomposition method give different results for certain input parameters compared with numerical methods. The clarification of this discrepancy is based on recent theoretical knowledge in the field of fractional-order differential equations and their systems. The conclusions are supported by numerical experiments, own code implementing the Adomian decomposition method on the Chen system was used.
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Cheng, Long [Verfasser], Alois [Akademischer Betreuer] Knoll, Kai [Gutachter] Huang und Alois [Gutachter] Knoll. „System Level Periodic Thermal Management for Hard Real-Time Systems / Long Cheng ; Gutachter: Kai Huang, Alois Knoll ; Betreuer: Alois Knoll“. München : Universitätsbibliothek der TU München, 2018. http://d-nb.info/1151638587/34.

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Bontrager, Austin. „Estimation of agricultural soil erosion and surface water quality trends in the Cheney Lake watershed“. Thesis, Kansas State University, 2011. http://hdl.handle.net/2097/13182.

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Master of Science
Department of Agronomy
Nathan Nelson
Phosphorus and sediment runoff are the primary cause of eutrophication in Cheney Lake, the primary water source for Wichita, Kansas. Best Management Practices (BMPs) such as no-till farming practices and nutrient management can be implemented to reduce phosphorus runoff on high-risk agricultural fields. Past efforts have established BMP use in this watershed, although the effectiveness of these efforts has not been evaluated. The goals of this project were to identify any existing water quality trends in the Cheney Lake watershed, estimate the current distribution of erosion in the watershed, and evaluate the placement of BMPs with regards to field-scale erosion risk. Parametric, multi-linear regression and non-parametric, seasonal Mann-Kendall analyses were used to identify trends in the Total Suspended Solids (TSS) and Total Phosphorus (TP) of grab samples from the North Fork Ninnescah River. A Geographic Information System (GIS) model based on the Revised Universal Soil Loss Equation (RUSLE) was used to estimate watershed-scale erosion, prioritize agricultural land for BMP placement, and evaluate existing placement of BMPs within the Cheney Lake watershed. No detectible trends were identified in the water quality data due to stream variability, frequency of sampling, or absence of actual improvement in water quality. Additional sampling must be done to detect any trends in the future. BMPs were implemented on 13% of prioritized field area, and 11% of non-prioritized field area. Conservation Reserve Program (CRP) fields were placed on 14% of prioritized field area, and 5% of non-prioritized field area. No-till practices were implemented on 13% of prioritized field area, and 18% of non-prioritized field area. The top 20% eroding fields were identified given current conditions, and account for approximately 56% of the watershed-wide erosion. The GIS method has demonstrated utility in evaluating past erosion control measures for the watershed and in informing future decisions concerning BMP placement.
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Cheng, YunChien [Verfasser], Edgar [Akademischer Betreuer] Doersam und Katja [Akademischer Betreuer] Schmitz. „CMOS-Chip Based Printing System for Combinatorial Synthesis / YunChien Cheng. Betreuer: Edgar Doersam ; Katja Schmitz“. Darmstadt : Universitäts- und Landesbibliothek Darmstadt, 2012. http://d-nb.info/1106117476/34.

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Cheng, Yun-Chien [Verfasser], Edgar [Akademischer Betreuer] Doersam und Katja [Akademischer Betreuer] Schmitz. „CMOS-Chip Based Printing System for Combinatorial Synthesis / YunChien Cheng. Betreuer: Edgar Doersam ; Katja Schmitz“. Darmstadt : Universitäts- und Landesbibliothek Darmstadt, 2012. http://nbn-resolving.de/urn:nbn:de:tuda-tuprints-30861.

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Si, Tou Wai Meng. „An Investigation of the dynamic behaviors of the chaotics Chen-Lee system“. Thesis, University of Macau, 2007. http://umaclib3.umac.mo/record=b1694327.

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Jäger, Wadim [Verfasser], Antonio [Akademischer Betreuer] Hurtado und Xu [Akademischer Betreuer] Cheng. „Validation and Application of the System Code TRACE for Safety Related Investigations of Innovative Nuclear Energy Systems / Wadim Jäger. Gutachter: Antonio Hurtado ; Xu Cheng. Betreuer: Antonio Hurtado“. Dresden : Saechsische Landesbibliothek- Staats- und Universitaetsbibliothek Dresden, 2012. http://d-nb.info/1067732640/34.

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Huang, Xi [Verfasser], und X. [Akademischer Betreuer] Cheng. „Study on Water Film Cooling for PWR's Passive Containment Cooling System / Xi Huang. Betreuer: X. Cheng“. Karlsruhe : KIT-Bibliothek, 2015. http://d-nb.info/1077821875/34.

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Molter, Christian [Verfasser], und Po Wen [Akademischer Betreuer] Cheng. „Development of a flying wind measurement system for collective operation / Christian Molter ; Betreuer: Po Wen Cheng“. Stuttgart : Universitätsbibliothek der Universität Stuttgart, 2020. http://d-nb.info/1220692840/34.

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Wang, Xi [Verfasser], und X. [Akademischer Betreuer] Cheng. „Multiscale thermal hydraulic analysis of fuel assembly and system of SFR / Xi Wang ; Betreuer: X. Cheng“. Karlsruhe : KIT-Bibliothek, 2019. http://d-nb.info/1187343269/34.

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Bücher zum Thema "Chenův systém"

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Velde, Edward J. Vander. Tubewells in Pakistan, distributary canal commands: Lagar Distributary, Lower Chenab Canal System, Punjab. Colombo, Sri Lanka: International Irrigation Management Institute, 1992.

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Kŭm, Tong-gwŏn. Pangsasŏn Kʻŭriptʻon mit Chenon punsŏk changbi kuchʻuk =: Build up of radioactive Krypton and Xenon analysis system. [Seoul]: Kyoyuk Kwahak Kisulbu, 2008.

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Kŭm, Tong-gwŏn. Pangsasŏn Kʻŭriptʻon mit Chenon punsŏk changbi kuchʻuk =: Build up of radioactive Krypton and Xenon analysis system. [Seoul]: Kyoyuk Kwahak Kisulbu, 2008.

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Vavrenyuk, Aleksandr, Viktor Makarov und Stanislav Kutepov. Operating systems. UNIX bases. ru: INFRA-M Academic Publishing LLC., 2016. http://dx.doi.org/10.12737/11186.

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In the manual basics command interfey-are covered са operating systems of UNIX family. Much attention is paid to practical use of teams of system and opportunities of language programming, shell provided by a cover. In a grant vklyu- Chena also some sections devoted to bases administrirova- niya and to network means of OS. At the end of each section there are questions for self-checking, the appendix contains a large number at - mayors of writing of shell-procedures. The manual is addressed to the students studying the modern information technologies according to programs of a bachelor degree, and also all, who wants to master the OS command interface of family independently UNIX in the shortest possible time. The edition can also be used as the short reference book on wasps - new UNIX OS.
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Zhixue, Wu. Yun cun chu xi tong: Swift de yuan li,Jia gou ji shi jian = The cloud storage system. Beijing: Ren min you dian chu ban she, 2015.

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Yu, Yong. Jing tong yi dong App ce shi shi zhan: Ji shu, Gong ju he an li = Proficiency in mobile phone system testing. Beijing: Ren min you dian chu ban she, 2016.

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zhu, Liu Guiyun Bian, Hrsg. Wu liu xi tong gui hua yu she ji: The planning and designing of logistics system. 2. Aufl. Hang zhou: Zhe jiang da xue chu ban she, 2015.

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Cheng, Yaogen, und Dexing Miao. Qian ru shi cao zuo xi tong: Linux pian = Embedded operating system (Linux). Beijing: Ren min you dian chu ban she, 2014.

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Malik, Saleem M. Farmers' organized behavior in irrigated agriculture in Pakistan's Punjab: A case study of six watercourse command areas in Junejwala minor, loer Chenab canal system. Colombo: International Irrigation Management Institue, 1996.

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Satzinger. Xi tong fen xi yu she ji: Systems Analysis and Design in a Changin g World. Beijing: Ji xie gong ye chu ban she, 2002.

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Buchteile zum Thema "Chenův systém"

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Cheng, Zunshui. „Anti-synchronization and Control of New Chen’s Hyperchaotic Systems“. In Advances in Neural Networks – ISNN 2011, 125–31. Berlin, Heidelberg: Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-642-21105-8_16.

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Sun, Guangzhen. „No Limit Cycle: Chen’s Learning Competition Model Revisited“. In Complexity and Self-Organization in Social and Economic Systems, 94–97. Berlin, Heidelberg: Springer Berlin Heidelberg, 1997. http://dx.doi.org/10.1007/978-3-642-48406-3_9.

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Zhu, Wei, Geng Yang, Jian Xu und Xiao-ling Yang. „Information Encryption Based on Virtual Optical Imaging System and Chen’s Chaos“. In Web Information Systems and Mining, 206–13. Berlin, Heidelberg: Springer Berlin Heidelberg, 2012. http://dx.doi.org/10.1007/978-3-642-33469-6_29.

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Chen, Kuo-Tsai. „Expansion of Solutions of Differential Systems“. In Collected Papers of K.-T. Chen, 177–93. Boston, MA: Birkhäuser Boston, 2001. http://dx.doi.org/10.1007/978-1-4612-2096-1_18.

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He, Hongjun, Yan Cui, Chenhui Lu und Guan Sun. „Time Delay Chen System Analysis and Its Application“. In Advances in Mechanical Design, 202–13. Singapore: Springer Singapore, 2019. http://dx.doi.org/10.1007/978-981-32-9941-2_17.

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Augustová, Petra, und Zdeněk Beran. „Characteristics of the Chen Attractor“. In Nostradamus 2013: Prediction, Modeling and Analysis of Complex Systems, 305–12. Heidelberg: Springer International Publishing, 2013. http://dx.doi.org/10.1007/978-3-319-00542-3_31.

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Chen, Kuo-Tsai. „Exact Dynamic Systems are Tree-Like and Vice Versa“. In Collected Papers of K.-T. Chen, 343–49. Boston, MA: Birkhäuser Boston, 2001. http://dx.doi.org/10.1007/978-1-4612-2096-1_31.

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Liu, Zhen, Wen-Xian Xiao, Ji-Tian Wang und Wen-Long Wan. „The Analysis of Fractional Chen Chaotic System Composite Structure“. In Communications in Computer and Information Science, 571–78. Berlin, Heidelberg: Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-642-24999-0_79.

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Peng, Jun, und Shangzhu Jin. „Designing Key-Dependent S-Boxes Using Hyperchaotic Chen System“. In Lecture Notes in Electrical Engineering, 733–40. London: Springer London, 2013. http://dx.doi.org/10.1007/978-1-4471-4856-2_89.

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Zhang, Yunong, Binbin Qiu und Xiaodong Li. „ZG Synchronization of Lu and Chen Chaotic Systems“. In Zhang-Gradient Control, 37–47. Singapore: Springer Singapore, 2020. http://dx.doi.org/10.1007/978-981-15-8257-8_3.

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Konferenzberichte zum Thema "Chenův systém"

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Smith, M. B., H. R. Andrews, E. T. H. Clifford, H. Ing, V. T. Koslowsky, R. A. Noulty, M. Zhang et al. „CANADIAN HIGH-ENERGY NEUTRON SPECTROMETRY SYSTEM (CHENSS)“. In International Workshop on Fast Neutron Detectors and Applications. Trieste, Italy: Sissa Medialab, 2007. http://dx.doi.org/10.22323/1.025.0006.

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Zhang, Jian. „A symmetric image cryptosystem based on Chen's chaotic system“. In 2013 9th International Conference on Natural Computation (ICNC). IEEE, 2013. http://dx.doi.org/10.1109/icnc.2013.6818175.

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Qu, Shaocheng, Xiaoyan Wang, Meijing Gong und Hao Qu. „Fuzzy Sliding Mode Controller for Uncertain Chen's Chaotic System“. In Fourth International Conference on Fuzzy Systems and Knowledge Discovery (FSKD 2007). IEEE, 2007. http://dx.doi.org/10.1109/fskd.2007.335.

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Sa, Yuchao, und Wei He. „Chen-Mobius voice communication system“. In 6th International Conference on Mechatronics, Materials, Biotechnology and Environment (ICMMBE 2016). Paris, France: Atlantis Press, 2016. http://dx.doi.org/10.2991/icmmbe-16.2016.99.

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Ji, Yuan, Cheng-Jin Zhang, Changyun Wen und Zhengguo Li. „A Practical Chaotic Secure Communication Scheme Based on Chen's System“. In 2006 9th International Conference on Control, Automation, Robotics and Vision. IEEE, 2006. http://dx.doi.org/10.1109/icarcv.2006.345446.

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Sulman, M., und M. Ashiq. „Impact of Irrigation Management Changes on Lower Chenab Canal System“. In World Environmental and Water Resources Congress 2010. Reston, VA: American Society of Civil Engineers, 2010. http://dx.doi.org/10.1061/41114(371)220.

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Naseri, E., A. Ranjbar und S. H. HosseinNia. „Backstepping Control of Fractional-Order Chen System“. In ASME 2009 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference. ASMEDC, 2009. http://dx.doi.org/10.1115/detc2009-86950.

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In this paper, Chaos and its control is studied in fractional-order Chen system. Backstepping method is proposed to synchronize two identical fractional-order Chen systems. The simulation results show that this method can effectively synchronize two identical chaotic systems.
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Guan jun Jia und Qun-h Zhang. „Impulsive synchronization of hyperchaotic Chen system“. In 2008 Chinese Control and Decision Conference (CCDC). IEEE, 2008. http://dx.doi.org/10.1109/ccdc.2008.4598005.

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„Visualising Equivalent System Networks in the NetLP optimisation of water distribution systems“. In 19th International Congress on Modelling and Simulation. Modelling and Simulation Society of Australia and New Zealand (MSSANZ), Inc., 2011. http://dx.doi.org/10.36334/modsim.2011.e12.chen.

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Austin, Francis, Chen Xu, Jian-wen Feng und Wei-qiang Zhang. „Adaptive Synchronization Between Hyperchaotic Lorenz System and Chen System“. In 2009 International Conference on Computational Intelligence and Security (CIS 2009). IEEE, 2009. http://dx.doi.org/10.1109/cis.2009.122.

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Berichte der Organisationen zum Thema "Chenův systém"

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Malik, S. M., Waheed-uz-Zaman und M. Kuper. Farmers' organized behavior in irrigated agriculture in Pakistan's Punjab: a case study of six watercourse command areas in Junejwala Minor, Lower Chenab Canal System. International Irrigation Management Institute (IIMI), 1996. http://dx.doi.org/10.5337/2013.038.

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