Добірка наукової літератури з теми "Compensation of nonlinearity"

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Статті в журналах з теми "Compensation of nonlinearity"

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Li, Songyu, Xinguang Du, Luyao Zhang, Ken Chen, and Shuai Wang. "Study on dynamic characteristics of underwater pressure compensator considering nonlinearity." Mechanical Sciences 11, no. 1 (June 3, 2020): 183–92. http://dx.doi.org/10.5194/ms-11-183-2020.

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Abstract. The external pressure is the biggest problem faced by underwater hydraulic systems. The strength and sealing ability of the structure are facing enormous challenges. For this problem, the common solution is to use pressure compensation technology. The pressure of the seawater is transmitted to the inside of the hydraulic system through a pressure compensator, which equalizes the return pressure of the hydraulic system and the seawater pressure. The structure of the compensation system, the volume and dynamic characteristics of the compensator, and the compensation failure caused by hydraulic oil leakage will all affect the normal operation of the underwater equipment. Therefore, it is necessary to study the pressure compensation system. This paper analyzes the pressure characteristics of the rubber-bellows type compensator. The dynamic characteristic equation of the pressure is established. Due to the strong nonlinear nature of rubber, the finite element method is used to simulate the deformation process of the rubber-bellows type pressure compensator. The relationship between the volume variation and the spring displacement of the rubber-bellows type pressure compensator is calculated by FE simulation. The relationship is brought into the theoretical equation result to obtain the pressure characteristics of the compensator. Through the control variable method, the influence of damping, total mass, effective area and spring stiffness on the internal pressure of the compensator is obtained. According to the analysis result, the damping ratio should be appropriately increased to reduce the overshoot of pressure fluctuations in the design. Since the damping is difficult to control, the total mass of the end cap, the guide post, the rubber bellows and the spring can be minimized. It also reduces the quality of the equipment. The spring stiffness and effective area have a significant influence on the steady-state pressure. A softer spring should be used and the effective area should be increased as much as possible to reduce the final steady-state pressure.
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Arpaia, P., L. Michaeli, and S. Rapuano. "Model-Based Compensation of SAR Nonlinearity." IEEE Transactions on Instrumentation and Measurement 58, no. 3 (March 2009): 541–50. http://dx.doi.org/10.1109/tim.2008.2005817.

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Lazzarin, G., S. Pupolin, and A. Sarti. "Nonlinearity compensation in digital radio systems." IEEE Transactions on Communications 42, no. 2/3/4 (February 1994): 988–99. http://dx.doi.org/10.1109/tcomm.1994.580207.

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Wang, Deng Wang, Hui Wang, Zhi Gang Liang, Shi Ying Tang, and Yan Li. "Study of Eliminating Calculation Errors in Large-Strain Measurement with Strain Gauges." Applied Mechanics and Materials 138-139 (November 2011): 548–52. http://dx.doi.org/10.4028/www.scientific.net/amm.138-139.548.

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Resistance strain gauge is common used in strain measurement, particularly in small elastic strain measurement, it has many advantages. However when the measured strain increases, the output nonlinearity of the Wheatstone bridge will become obvious; in this paper the nonlinearity error of the output in large-strain measurement is analyzed, and based on this a mathematical algorithm for nonlinearity compensation is proposed; finally the effect of the algorithm for nonlinearity compensation is proved by theoretical research and experimental treatment.
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Dincmen, Erkin. "Extremum seeking dead-zone pre-compensator for an industrial control system." at - Automatisierungstechnik 66, no. 6 (June 1, 2018): 471–82. http://dx.doi.org/10.1515/auto-2017-0095.

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Abstract PID type industrial controllers such as PI, PD, PID are mature control algorithms and they are intensively used in industry due to their simplicity and easily implementability. However, they start to fail when there is an unknown or unpredictable nonlinear behavior in the plant or actuator. In this paper, a novel compensation algorithm is proposed for PD type industrial control systems, which possess an unknown dead-zone nonlinearity. An extremum-seeking technique is utilized in the compensation algorithm. The aim is to propose a new, effective and robust compensator which can be added easily to an existing industrial controller without any need to change/retune the controller settings/parameters. It is shown that by adding the compensator to an existing PD control system, the sensitivity of the controller to the dead-zone nonlinearity is removed.
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Lee, Kyo-Beum, and Frede Blaabjerg. "Disturbance Observer-Based Simple Nonlinearity Compensation for Matrix Converter Drives." Research Letters in Electronics 2009 (2009): 1–4. http://dx.doi.org/10.1155/2009/215782.

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This paper presents a new method to compensate the nonlinearity for matrix converter drives using disturbance observer. The nonlinearity of matrix converter drives such as commutation delay, turn-on and turn-off time of switching device, and on-state switching device voltage drop is modeled by disturbance observer and compensated. The proposed method does not need any additional hardware and offline experimental measurements. The proposed compensation method is applied for high-performance induction motor drives using a 3 kW matrix converter system without a speed sensor. Simulation and experimental results show that the proposed method using disturbance observer provides good compensating characteristics.
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Shi, Qi, Liyu Ouyang, Jinhua She, Li Xu, Junya Imani, and Yasuhiro Ohyama. "Compensation of Stribeck-Type Nonlinear Friction in Positioning Control Using Equivalent-Input-Disturbance Approach." Journal of Advanced Computational Intelligence and Intelligent Informatics 18, no. 2 (March 20, 2014): 150–56. http://dx.doi.org/10.20965/jaciii.2014.p0150.

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A method of compensating for Stribeck-type nonlinear friction torque for a two-mass mechatronic system has been devised based on the equivalent-inputdisturbance (EID) approach. The nonlinearity in the system is treated as an input-dependent disturbance, and an EID estimator is designed that estimates it. The incorporation of the estimate into the control input compensates for the nonlinearity. Simulation results demonstrate the validity of the method and show that the compensation accuracy is closely related to the time constant of the low-pass filter.
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Kumar Orappanpara Soman, Sunish. "A tutorial on fiber Kerr nonlinearity effect and its compensation in optical communication systems." Journal of Optics 23, no. 12 (November 22, 2021): 123502. http://dx.doi.org/10.1088/2040-8986/ac362a.

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Abstract The advent of silica-based low-cost standard single-mode fibers revolutionized the whole communication industry. The deployment of optical fibers in the networks induces a paradigm shift in the communication technologies used for long-haul information transfer. However, the communication using the optical fibers is affected by several linear and nonlinear effects. The most common linear effects are attenuation and chromatic dispersion, whereas the dominant nonlinear effect is the Kerr effect. The Kerr effect induces a power-dependent nonlinear distortion for the signal propagating in the optical fiber. The detrimental effects of the Kerr nonlinearity limit the capacity of long-haul optical communication systems. Fiber Kerr nonlinearity compensation using digital signal processing (DSP) techniques has been well investigated over several years. In this paper, we provide a comprehensive tutorial, including the fundamental mathematical analysis, on the characteristics of the optical fiber channel, the origin of the Kerr nonlinearity effect, the theory of the pulse propagation in the optical fiber, and the numerical and analytical tools for solving the pulse propagation equation. In addition, we provide a concise review of various DSP techniques for fiber nonlinearity compensation, such as digital back-propagation, Volterra series-based nonlinearity equalization, perturbation theory-based nonlinearity compensation, and phase conjugation. We also carry out numerical simulation and the complexity evaluation of the selected nonlinearity compensation techniques.
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Ren, Xiao, and Wen Mei Hou. "Research on Phase Compensation of Nonlinearity Error in Heterodyne Interferometer." Applied Mechanics and Materials 263-266 (December 2012): 435–43. http://dx.doi.org/10.4028/www.scientific.net/amm.263-266.435.

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A novel method to eliminate nonlinearity error in heterodyne interferometer is studied in the paper. A simple phase compensation system is built and the nonlinearity error is eliminated by rotating the polarizer in front of the optical detector in interferometer according to phase difference signal. The experiments demonstrate that the method is available to eliminate one-order or high-order nonlinearity in heterodyne interferometer. The effects to decrease nonlinearity error depend on high measuring precision of phase difference and high control precision of the rotating polarizer.
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Jun Oh Jang. "Adaptive NFN Nonlinearity Compensation for Mobile Manipulators." Journal of Next Generation Information Technology 4, no. 2 (April 30, 2013): 59–75. http://dx.doi.org/10.4156/jnit.vol4.issue2.7.

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Дисертації з теми "Compensation of nonlinearity"

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Kulig, Gabriel, and Gustav Wallin. "R/2R DAC Nonlinearity Compensation." Thesis, Linköpings universitet, Elektroniksystem, 2012. http://urn.kb.se/resolve?urn=urn:nbn:se:liu:diva-84481.

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The resistor ladder (R/2R) digital-to-analogue converter (DAC) architecture is often used in high performance audio solutions due to its low-noise performance. Even high-end R/2R DACs suffer from static nonlinearity distortions. It was suspected that compensating for these nonlinearities would be possible. It was also suspected that this could improve audio quality in audio systems using R/2R DACs for digital-to-analogue (A/D) conversion. Through the use of models of the resistor ladder architecture a way of characterizing and measuring the faults in the R/2R DAC was created. A compensation algorithm was developed in order to compensate for the nonlinearities. The performance of the algorithm was simulated and an implementation of it was evaluated using an audio evaluation instrument. The results presented show that it is possible to increase linearity in R/2R DACs by compensating for static nonlinearity distortions. The increase in linearity can be quite significant and audible for the trained ear.
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Zhu, Likai. "Computationally efficient digital backward propagation for fiber nonlinearity compensation." Doctoral diss., University of Central Florida, 2011. http://digital.library.ucf.edu/cdm/ref/collection/ETD/id/4728.

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The next generation fiber transmission system is limited by fiber nonlinearity. A distributed nonlinearity compensation method, known as Digital Backward Propagation (DBP), is necessary for effective compensation of the joint effect of dispersion and nonlinearity. However, in order for DBP to be accurate, a large number of steps are usually required for long-haul transmission, resulting in a heavy computational load. In real time DBP implementation, the FIR filters can be used for dispersion compensation and account for most of the computation per step. A method of designing a complementary filter pair is proposed. The individual errors in the frequency response of the two filters in a complementary filter pair cancel each other. As a result, larger individual filter error can be tolerated and the required filter length is significantly reduced. Unequal step size can be used in DBP to minimize the number of steps. For unrepeatered transmission with distributed Raman amplification, the Raman gain as a function of the distance and the effective fiber length of each DBP step need to be calculated by solving the differential equations of Raman amplification. The split-step DBP is performed only for transmission where the signal power is high. In comparison with solving the nonlinear Schrodinger equation (NLSE) for the total field of the WDM signal, solving the coupled NLSE requires a smaller step number and a lower sampling rate. In addition, the phase-locking between the local oscillators is not necessary for solving the coupled NLSE. The XPM compensation of WDM long-haul transmission by solving the coupled NLSE is experimentally demonstrated. At the optimum power level of fiber transmission, the total nonlinear phase shift is on the order of 1 radian. Therefore, for transoceanic fiber transmission systems which consist of many (>100) amplified fiber spans, the nonlinear effects in each span are weak. As a result, the optical waveform evolution is dominated by the dispersion. Taking advantage of the periodic waveform evolution in periodically dispersion managed fiber link, the DBP of K fiber spans can be folded into one span with K times the nonlinearity. This method can be called "distance-folded DBP". Under the weakly nonlinear assumption, the optical waveform repeats at locations where accumulated dispersions are identical. Consequently, the nonlinear behavior of the optical signal also repeats at locations of identical accumulative dispersion. Hence for a fiber link with arbitrary dispersion map, the DBP steps can be folded according to the accumulated dispersion. Experimental results show considerable savings in computation using this "dispersion-folded DBP" method. Simulation results show that the dramatically reduced computational load makes the nonlinearity-compensated dispersion-managed fiber link a competitive candidate for the next-generation transmission systems.
ID: 031001391; System requirements: World Wide Web browser and PDF reader.; Mode of access: World Wide Web.; Title from PDF title page (viewed May 28, 2013).; Thesis (Ph.D.)--University of Central Florida, 2011.; Includes bibliographical references.
Ph.D.
Doctorate
Optics and Photonics
Optics and Photonics
Optics
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Tayebi, Niloufar. "Laser nonlinearity compensation for subcarrier multiplexed optical transmission systems." Thesis, University of Ottawa (Canada), 1992. http://hdl.handle.net/10393/7665.

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Subcarrier multiplexing efficiently uses the available fiber bandwidth in video transmission. Semiconductor lasers are usually used as optical transmitters in such systems. A semiconductor laser exhibits nonlinear characteristics. Nonlinearity degrades system performance. For nonlinearity compensation, a nonlinear predistortion block is assumed to be incorporated prior to the laser. Characteristics of this nonlinear block invert those of the laser. Performance of the subcarrier multiplexed system with and without predistortion is evaluated by harmonic distortion and intermodulation distortion analyses. Nonlinear distortion level decreases significantly when predistortion is employed prior to the laser. This enhancement results in system requirements for carrier-to-noise ratio being met.
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Cavaco, Telmo Filipe Pedrosa. "Compensation of MZ-IQ-modulator nonlinearity based on FPGA algorithms." Master's thesis, Universidade de Aveiro, 2013. http://hdl.handle.net/10773/12677.

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Mestrado em Engenharia Electrónica e Telecomunicações
Nos últimos anos, a crescente necessidade de largura de banda e a evolução das técnicas de processamento digital de sinal renovaram o interesse pelos sistemas de comunicação ópticos coerentes. O modulador IQ assume-se como um componente chave nestes transmissores, sendo responsável pela conversão de informação do domínio eléctrico para o domínio óptico. Os moduladores Mach-Zehnder que constituem este dispositivo recebem sinais de drive com uma excursão controlada, garantindo a utilização de uma região aproximadamente linear das suas funções transferência e a geração de constelações sem distorções de fase. No entanto, existem vantagens em explorar a extensão completa da característica dos moduladores. Neste contexto, torna-se relevante efectuar um estudo acerca das técnicas de pré-distorção electrónica que permitem corrigir os efeitos das não-linearidades associadas a este método de transmissão. Esta dissertação foca-se no estudo da compensação dos impactos que a característica não-linear do modulador Mach-Zehnder tem nos sistemas de transmissão ópticos coerentes. Após a identificação e desenvolvimento de soluções matemáticas para o problema, realizaram-se vários testes utilizando um simulador integrado em ambiente MATLAB. Um sistema de transmissão coerente utilizando formatos de modulação QAM e os respectivos algoritmos de compensação foram posteriormente implementados em FPGA. Desenvolveram-se também co-simulações que permitiram garantir que o hardware concebido produzia os resultados desejados. Para além disso, realizaram-se vários testes utilizando um modulador IQ disponível no “Laboratório de Óptica” do Instituto de Telecomunicações de Aveiro. O objectivo consistiu em operar o sistema em condições laboratoriais e analisar o desempenho dos algoritmos de compensação em ambiente real.
In recent years, the ever-increasing bandwidth demand and the evolution of digital signal processing techniques renewed the interest for the optical coherent systems. The IQ-Modulator is a key component in optical coherent transmitters, being responsible for the conversion of information from electrical to optical domain. The Mach-Zehnder modulators that compose this device receive driving signals with a controlled excursion, in order to use an approximately linear region of their transfer function and produce constellations without phase distortions. However, there are advantages in exploit the full range of the modulators’ characteristic. In this context, a study about the electronic predistortion techniques required to overcome the nonlinear effects associated to this transmission method becomes relevant. The subject of this dissertation is the compensation of impairments related to the nonlinear characteristic of the Mach-Zehnder Modulator in coherent optical transmission systems. After the identification and development of mathematical solutions for the problem, several tests were made using a simulator that runs in a MATLAB environment. A QAM coherent transmitter system and the compensation algorithm were then implemented in a FPGA platform. Co-simulations were performed in order to prove that the designed hardware was generating correct results. Furthermore, some tests were conducted using an IQ-Modulator available in the “Optics Laboratory” at Telecommunications Institute of Aveiro. The goal was to operate the system under laboratorial conditions and analyze the performance of the compensation algorithm in a real case scenario.
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Lyman, Raphael J., and Qingsong Wang. "A DECOUPLED APPROACH TO COMPENSATION FOR NONLINEARITY AND INTERSYMBOL INTERFERENCE." International Foundation for Telemetering, 2002. http://hdl.handle.net/10150/605571.

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International Telemetering Conference Proceedings / October 21, 2002 / Town & Country Hotel and Conference Center, San Diego, California
To achieve good efficiency in a space-based radio transmitter, its final amplifier must be operated near the saturation point, in its nonlinear region. Because of strict band limitations, this nonlinear operation is combined with the problem of intersymbol interference. Normally, these problems are addressed using a combination of equalization and power back-off, resulting in reduced power efficiency. Many proposed receiver-based methods, such as Volterra equalization, attempt to compensate for the nonlinearity and ISI in a single block before the detector, allowing higher efficiency operation, but introducing a great deal of complexity. We propose a receiver-based method in which the two effects are dealt with in separate blocks, an equalizer and a linearizer, resulting in considerable simplification. We go further and place the detector before the linearizer, achieving improved performance by eliminating the errors introduced by the linearizer. Simulation results compare favorably with the performance of a linear AWGN channel.
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Lee, Chin Hee. "Characterisation and compensation of direct laser modulation nonlinearity in radio-over-fibre systems." Thesis, University of Leeds, 2004. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.405746.

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Bozic, M. "Joint compensation of I/Q impairments and PA nonlinearity in mobile broadband wireless transmitters." Thesis, University of Westminster, 2016. https://westminsterresearch.westminster.ac.uk/item/9yxv7/joint-compensation-of-i-q-impairments-and-pa-nonlinearity-in-mobile-broadband-wireless-transmitters.

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The main focus of this thesis is to develop and investigate a new possible solution for compensation of in-phase/quadrature-phase (I/Q) impairments and power amplifier (PA) nonlinearity in wireless transmitters using accurate, low complexity digital predistortion (DPD) technique. After analysing the distortion created by I/Q modulators and PAs together with nonlinear crosstalk effects in multi-branch multiple input multiple output (MIMO) wireless transmitters, a novel two-box model is proposed for eliminating those effects. The model is realised by implementing two phases which provide an optimisation of the identification of any system. Another improvement is the capability of higher performance of the system without increasing the computational complexity. Compared with conventional and recently proposed models, the approach developed in this thesis shows promising results in the linearisation of wireless transmitters. Furthermore, the two-box model is extended for concurrent dual-band wireless transmitters and it takes into account cross-modulation (CM) products. Besides, it uses independent processing blocks for both frequency bands and reduces the sampling rate requirements of converters (digital-to-analogue and analogue-to-digital). By using two phases for the implementation, the model enables a scaling down of the nonlinear order and the memory depth of the applied mathematical functions. This leads to a reduced computational complexity in comparison with recently developed models. The thesis provides experimental verification of the two-box model for multi-branch MIMO and concurrent dual-band wireless transmitters. Accordingly, the results ensure both the compensation of distortion and the performance evaluation of modern broadband wireless transmitters in terms of accuracy and complexity.
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Jarajreh, Mutsam Abdel-karim. "Coherent optical OFDM modem employing artificial neural networks for dispersion and nonlinearity compensation in a long-haul transmission system." Thesis, Northumbria University, 2012. http://nrl.northumbria.ac.uk/9596/.

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In order to satisfy the ever increasing demand for the bandwidth requirement in broadband services the optical orthogonal frequency division multiplexing (OOFDM) scheme is being considered as a promising technique for future high-capacity optical networks. The aim of this thesis is to investigate, theoretically, the feasibility of implementing the coherent optical OFDM (CO-OOFDM) technique in long haul transmission networks. For CO-OOFDM and Fast-OFDM systems a set of modulation formats dependent analogue to digital converter (ADC) clipping ratio and the quantization bit have been identified, moreover, CO-OOFDM is more resilient to the chromatic dispersion (CD) when compared to the bandwidth efficient Fast-OFDM scheme. For CO-OOFDM systems numerical simulations are undertaken to investigate the effect of the number of sub-carriers, the cyclic prefix (CP), and ADC associated parameters such as the sampling speed, the clipping ratio, and the quantisation bit on the system performance over single mode fibre (SMF) links for data rates up to 80 Gb/s. The use of a large number of sub-carriers is more effective in combating the fibre CD compared to employing a long CP. Moreover, in the presence of fibre non-linearities identifying the optimum number of sub-carriers is a crucial factor in determining the modem performance. For a range of signal data rates up to 40 Gb/s, a set of data rate and transmission distance-dependent optimum ADC parameters are identified in this work. These parameters give rise to a negligible clipping and quantisation noise, moreover, ADC sampling speed can increase the dispersion tolerance while transmitting over SMF links. In addition, simulation results show that the use of adaptive modulation schemes improves the spectrum usage efficiency, thus resulting in higher tolerance to the CD when compared to the case where identical modulation formats are adopted across all sub-carriers. For a given transmission distance utilizing an artificial neural networks (ANN) equalizer improves the system bit error rate (BER) performance by a factor of 50% and 70%, respectively when considering SMF firstly CD and secondly nonlinear effects with CD. Moreover, for a fixed BER of 10-3 utilizing ANN increases the transmission distance by 1.87 times and 2 times, respectively while considering SMF CD and nonlinear effects. The proposed ANN equalizer performs more efficiently in combating SMF non-linearities than the previously published Kerr nonlinearity electrical compensation technique by a factor of 7.
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Sackey, Isaac [Verfasser], Klaus [Gutachter] Petermann, Nick [Gutachter] Doran, and Ronald [Gutachter] Freund. "Kerr nonlinearity compensation using polarization-independent fiber-based optical parametric amplifier in high-speed optical transmission systems / Isaac Sackey ; Gutachter: Klaus Petermann, Nick Doran, Ronald Freund." Berlin : Technische Universität Berlin, 2016. http://d-nb.info/1153013150/34.

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Bakri, Nizar. "Asservissement par camera d'un pendule inverse." Université Louis Pasteur (Strasbourg) (1971-2008), 1987. http://www.theses.fr/1987STR13222.

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Частини книг з теми "Compensation of nonlinearity"

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Hong, Minsuk, Jaewook Jeon, Kiheon Park, and Kwanho You. "Adaptive Nonlinearity Compensation of Heterodyne Laser Interferometer." In Lecture Notes in Computer Science, 545–52. Berlin, Heidelberg: Springer Berlin Heidelberg, 2006. http://dx.doi.org/10.1007/11893004_71.

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El-Khatib, Ziad, Leonard MacEachern, and Samy A. Mahmoud. "Distributed Amplification Principles and Transconductor Nonlinearity Compensation." In Distributed CMOS Bidirectional Amplifiers, 29–46. New York, NY: Springer New York, 2012. http://dx.doi.org/10.1007/978-1-4614-0272-5_3.

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Talaš, Stanislav, Vladimír Bobál, Adam Krhovják, and Lukáš Rušar. "Nonlinearity and Time-Delay Compensations in State-Space Model Based Predictive Control." In Automation Control Theory Perspectives in Intelligent Systems, 99–106. Cham: Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-33389-2_10.

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Du, Chunling, and Lihua Xie. "Nonlinearity Compensation and Nonlinear Control." In Modeling and Control of Vibration in Mechanical Systems, 251–60. CRC Press, 2018. http://dx.doi.org/10.1201/9781315218069-13.

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"Nonlinearity Compensation and Nonlinear Control." In Automation and Control Engineering, 251–59. CRC Press, 2010. http://dx.doi.org/10.1201/9781439817995-c13.

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"Adaptive Compensation for the ROF Link Nonlinearity." In Radio Over Fiber for Wireless Communications, 139–57. Chichester, UK: John Wiley & Sons, Ltd, 2014. http://dx.doi.org/10.1002/9781118797051.ch9.

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Rafique, Danish. "Fiber Nonlinearity Compensation: Performance Limits and Commercial Outlook." In Optical Communication Systems, 95–121. Jenny Stanford Publishing, 2019. http://dx.doi.org/10.1201/9780429027802-3.

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Liang, Xiaojun, Jing Shao, and Shiva Kumar. "Optical back propagation for compensation of dispersion and nonlinearity in fiber optic transmission systems." In Odyssey of Light in Nonlinear Optical Fibers, 435–58. CRC Press, 2017. http://dx.doi.org/10.1201/b19377-17.

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"On Post-Compensating Fiber Nonlinearity for Coherent Optical OFDM Network Transmissions." In International Conference on Instrumentation, Measurement, Circuits and Systems (ICIMCS 2011), 643–46. ASME Press, 2011. http://dx.doi.org/10.1115/1.859902.paper143.

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Тези доповідей конференцій з теми "Compensation of nonlinearity"

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Etsushi Yamazaki, Fumikazu Inuzuka, Kazushige Yonenaga, Atsushi Takada, and Yutaka Miyamoto. "Nonlinearity compensation in WDM transmission." In 2008 Digest of the IEEE/LEOS Summer Topical Meetings. IEEE, 2008. http://dx.doi.org/10.1109/leosst.2008.4590541.

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Chen, Zhiyu, Lianshan Yan, Anlin Yi, Lin Jiang, Yan Pan Wei Pan, and Bin Luo. "Low Complexity and Adaptive Nonlinearity Compensation." In CLEO: Science and Innovations. Washington, D.C.: OSA, 2015. http://dx.doi.org/10.1364/cleo_si.2015.sm2m.6.

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Zhou, Junhe, and Yutian Yan. "A Hybrid Fiber Nonlinearity Compensation Algorithm." In 2019 Photonics & Electromagnetics Research Symposium - Fall (PIERS - Fall). IEEE, 2019. http://dx.doi.org/10.1109/piers-fall48861.2019.9021410.

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Solis-Trapala, Karen, Takashi Inoue, Mark Pelusi, Nguyen Tan Hung, and Shu Namiki. "Implementing ideal nonlinear compensation through nonlinearity." In 2015 IEEE Photonics Society Summer Topical Meeting Series (SUM). IEEE, 2015. http://dx.doi.org/10.1109/phosst.2015.7248270.

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Mateo, Eduardo F., Fatih Yaman, Ting Wang, and Guifang Li. "Nonlinearity Compensation Using Digital Backward Propagation." In Signal Processing in Photonic Communications. Washington, D.C.: OSA, 2011. http://dx.doi.org/10.1364/sppcom.2011.spwa1.

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Yaman, Fatih, Eduardo Mateo, Shaoliang Zhang, Dayou Qian, Ting Wang, Takanori Inoue, Yoshihisa Inada, and Takaaki Ogata. "Nonlinearity Compensation for Digital Coherent Receivers." In Signal Processing in Photonic Communications. Washington, D.C.: OSA, 2013. http://dx.doi.org/10.1364/sppcom.2013.spt5d.1.

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Sygletos, Stylianos, Alexey Redyuk, and Oleg Sidelnikov. "Nonlinearity Compensation Techniques Using Machine Learning." In Signal Processing in Photonic Communications. Washington, D.C.: OSA, 2019. http://dx.doi.org/10.1364/sppcom.2019.spt2e.2.

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Frey, Felix, Robert Emmerich, Colja Schubert, Johannes K. Fischer, and Robert F. H. Fischer. "Improved Perturbation-Based Fiber Nonlinearity Compensation." In 2018 European Conference on Optical Communication (ECOC). IEEE, 2018. http://dx.doi.org/10.1109/ecoc.2018.8535303.

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Zhang, Shaoliang, Fatih Yaman, Eduardo Mateo, and Yoshihisa Inada. "Neuron-Network-Based Nonlinearity Compensation Algorithm." In 2018 European Conference on Optical Communication (ECOC). IEEE, 2018. http://dx.doi.org/10.1109/ecoc.2018.8535376.

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Mateo, Eduardo F., and Fatih Yaman. "Nonlinearity Compensation in Modern Submarine Networks." In 2019 24th OptoElectronics and Communications Conference (OECC) and 2019 International Conference on Photonics in Switching and Computing (PSC). IEEE, 2019. http://dx.doi.org/10.23919/ps.2019.8817736.

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