858 resultados para cinematic feedback
Resumo:
RESUMO: O Biofeedback cinemático na realização de exercícios escápulo-torácicos Patrícia Ribeiro; Ricardo Matias Desenho do estudo: Estudo quantitativo, experimental, prospetivo de fator único. Objetivos: Determinar a efetividade do biofeedback cinemático tridimensional (3D) em tempo real, como informação de retorno extrínseca, no reconhecimento da zona neutra da omoplata, em indivíduos saudáveis; medir o desempenho temporal, através do tempo que os sujeitos demoram a atingir a posição pretendida, e o desempenho no percurso, através da diferença entre o percurso efetuado e aquele que seria o percurso mais curto, sem Informação de Retorno Extrínseca (IRE), com Informação de Retorno Extrínseca clinica verbal e palpatória (IRE-VP) e com informação de retorno extrínseca visual cinemática (IRE-VC). Enquadramento: Reconhecer aquela que deve ser a posição adequada da omoplata e tomar consciência da importância dessa posição para a estabilidade e correto funcionamento da articulação gleno-umeral é uma tarefa difícil, pois a grande maioria do indivíduos não têm os conhecimentos necessários. É reconhecido o contributo que a IRE tem na reaprendizagem motora, em especial na primeira fase da aprendizagem motora – a consciencialização. Vários estudos se têm debruçado em avaliar a influencia da IRE na reabilitação de indivíduos com disfunção do ombro, tendo-se limitado ao formato electromiográfico. No sentido de encontrar novas estratégias para facilitar o processo de reaprendizagem motora nestes indivíduos, foi escolhido biofeedback cinemático tridimensional. Métodos: Participaram no estudo 60 sujeitos, sem queixas de dor no ombro, com idades compreendidas entre os 18 e os 54 anos, com um valor médio de 21,66 anos (±5.89), divididos aleatoriamente em três grupos com uma tarefa comum: o reconhecimento da zona neutra da omoplata. Um grupo não recebeu qualquer tipo de IRE - Grupo Controlo (GC), outro grupo recebeu IRE-VP e outro recebeu IRE-VC. Para efeitos de análise da performance foram consideradas duas variáveis: tempo e qualidade da execução. A abordagem estatística destas variáveis consistiu numa análise de variância simples e num teste de comparações múltiplas. Resultados: Observámos que o grupo controlo e o grupo IRE-VC efetuaram a tarefa pedida em menos tempo que o grupo IRE-VP (p<0.01) e que o grupo IRE-VC obteve melhores resultados no que respeita à qualidade da execução da tarefa do que o GC e o grupo IRE-VP (p<0.01). Conclusão: Pelos resultados obtidos, na tarefa de reconhecimento da zona neutra da omoplata, podemos concluir que o biofeedback cinemático é mais efetivo na facilitação da obtenção de melhor qualidade de execução da tarefa do que o feedback clinico ou a inexistência de feedback e igualmente efetivo à inexistência de IRE no que respeita ao tempo demorado a reconhecer essa posição. -------------- ABSTRACT:Study Design: Single factor experimental design. Objectives: To determine the effectiveness of real time cinematic biofeedback as extrinsic information in the recognition of the neutral zone of the scapula in healthy subjects; to measure the temporal performance and quality of the execution without extrinsic feedback, with clinical feedback and with cinematic feedback. Background: To recognize the proper scapula position and to be aware of the importance of this position to the stability and correct function of the gleno-umeral joint is a difficult task, because most people don’t have the necessary knowledge. It is known that extrinsic feedback is effective in motor learning, specially in the early stages. There are several studies that evaluated the influence of extrinsic feedback in rehabilitation of shoulder dysfunctions, but only in the electromyography format. Material and Methods: Sixty healthy subjects were randomly divided into 3 groups that received no feedback (group 1 – control group), verbal and palpatory feedback (group 2) and real time cinematic feedback (group 3). The performance variables considered – time and quality of execution - were statistically analyzed with ANOVA one-way and multiple comparisons test. Results: Control group and group 3 executed the task in less time that group 2 (p<0.01) and group 3 executed the task with better quality than control group and group 2 (p<0.01). Conclusions: From the results of this study we conclude that in the studied task, the cinematic feedback is more effective to facilitate a better quality of execution than no feedback or clinical feedback and, regarding to time taken to attain the requested position, equally effective to no feedback.
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A model predictive controller (MPC) is proposed, which is robustly stable for some classes of model uncertainty and to unknown disturbances. It is considered as the case of open-loop stable systems, where only the inputs and controlled outputs are measured. It is assumed that the controller will work in a scenario where target tracking is also required. Here, it is extended to the nominal infinite horizon MPC with output feedback. The method considers an extended cost function that can be made globally convergent for any finite input horizon considered for the uncertain system. The method is based on the explicit inclusion of cost contracting constraints in the control problem. The controller considers the output feedback case through a non-minimal state-space model that is built using past output measurements and past input increments. The application of the robust output feedback MPC is illustrated through the simulation of a low-order multivariable system.
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In the MPC literature, stability is usually assured under the assumption that the state is measured. Since the closed-loop system may be nonlinear because of the constraints, it is not possible to apply the separation principle to prove global stability for the Output feedback case. It is well known that, a nonlinear closed-loop system with the state estimated via an exponentially converging observer combined with a state feedback controller can be unstable even when the controller is stable. One alternative to overcome the state estimation problem is to adopt a non-minimal state space model, in which the states are represented by measured past inputs and outputs [P.C. Young, M.A. Behzadi, C.L. Wang, A. Chotai, Direct digital and adaptative control by input-output, state variable feedback pole assignment, International journal of Control 46 (1987) 1867-1881; C. Wang, P.C. Young, Direct digital control by input-output, state variable feedback: theoretical background, International journal of Control 47 (1988) 97-109]. In this case, no observer is needed since the state variables can be directly measured. However, an important disadvantage of this approach is that the realigned model is not of minimal order, which makes the infinite horizon approach to obtain nominal stability difficult to apply. Here, we propose a method to properly formulate an infinite horizon MPC based on the output-realigned model, which avoids the use of an observer and guarantees the closed loop stability. The simulation results show that, besides providing closed-loop stability for systems with integrating and stable modes, the proposed controller may have a better performance than those MPC controllers that make use of an observer to estimate the current states. (C) 2008 Elsevier Ltd. All rights reserved.
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This paper analyzes the convergence of the constant modulus algorithm (CMA) in a decision feedback equalizer using only a feedback filter. Several works had already observed that the CMA presented a better performance than decision directed algorithm in the adaptation of the decision feedback equalizer, but theoretical analysis always showed to be difficult specially due to the analytical difficulties presented by the constant modulus criterion. In this paper, we surmount such obstacle by using a recent result concerning the CM analysis, first obtained in a linear finite impulse response context with the objective of comparing its solutions to the ones obtained through the Wiener criterion. The theoretical analysis presented here confirms the robustness of the CMA when applied to the adaptation of the decision feedback equalizer and also defines a class of channels for which the algorithm will suffer from ill-convergence when initialized at the origin.
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This paper considers two aspects of the nonlinear H(infinity) control problem: the use of weighting functions for performance and robustness improvement, as in the linear case, and the development of a successive Galerkin approximation method for the solution of the Hamilton-Jacobi-Isaacs equation that arises in the output-feedback case. Design of nonlinear H(infinity) controllers obtained by the well-established Taylor approximation and by the proposed Galerkin approximation method applied to a magnetic levitation system are presented for comparison purposes.
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Although the formulation of the nonlinear theory of H(infinity) control has been well developed, solving the Hamilton-Jacobi-Isaacs equation remains a challenge and is the major bottleneck for practical application of the theory. Several numerical methods have been proposed for its solution. In this paper, results on convergence and stability for a successive Galerkin approximation approach for nonlinear H(infinity) control via output feedback are presented. An example is presented illustrating the application of the algorithm.
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This work summarizes some results about static state feedback linearization for time-varying systems. Three different necessary and sufficient conditions are stated in this paper. The first condition is the one by [Sluis, W. M. (1993). A necessary condition for dynamic feedback linearization. Systems & Control Letters, 21, 277-283]. The second and the third are the generalizations of known results due respectively to [Aranda-Bricaire, E., Moog, C. H., Pomet, J. B. (1995). A linear algebraic framework for dynamic feedback linearization. IEEE Transactions on Automatic Control, 40, 127-132] and to [Jakubczyk, B., Respondek, W. (1980). On linearization of control systems. Bulletin del` Academie Polonaise des Sciences. Serie des Sciences Mathematiques, 28, 517-522]. The proofs of the second and third conditions are established by showing the equivalence between these three conditions. The results are re-stated in the infinite dimensional geometric approach of [Fliess, M., Levine J., Martin, P., Rouchon, P. (1999). A Lie-Backlund approach to equivalence and flatness of nonlinear systems. IEEE Transactions on Automatic Control, 44(5), 922-937]. (C) 2008 Elsevier Ltd. All rights reserved.
Resumo:
Some motor tasks can be completed, quite literally, with our eyes shut. Most people can touch their nose without looking or reach for an object after only a brief glance at its location. This distinction leads to one of the defining questions of movement control: is information gleaned prior to starting the movement sufficient to complete the task (open loop), or is feedback about the progress of the movement required (closed loop)? One task that has commanded considerable interest in the literature over the years is that of steering a vehicle, in particular lane-correction and lane-changing tasks. Recent work has suggested that this type of task can proceed in a fundamentally open loop manner [1 and 2], with feedback mainly serving to correct minor, accumulating errors. This paper reevaluates the conclusions of these studies by conducting a new set of experiments in a driving simulator. We demonstrate that, in fact, drivers rely on regular visual feedback, even during the well-practiced steering task of lane changing. Without feedback, drivers fail to initiate the return phase of the maneuver, resulting in systematic errors in final heading. The results provide new insight into the control of vehicle heading, suggesting that drivers employ a simple policy of “turn and see,” with only limited understanding of the relationship between steering angle and vehicle heading.
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Control of chaos in the single-mode optically pumped far-infrared (NH3)-N-15 laser is experimentally demonstrated using continuous time-delay control. Both the Lorenz spiral chaos and the detuned period-doubling chaos exhibited by the laser have been controlled. While the laser is in the Lorenz spiral chaos regime the chaos has been controlled both such that the laser output is cw, with corrections of only a fraction of a percent necessary to keep it there, and to period one. The laser has also been controlled while in the period-doubling chaos regime, to both the period-one and -two states.
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The free running linewidth of an external cavity grating feedback diode laser is on the order of a few megahertz and is limited by the mechanical and acoustic vibrations of the external cavity. Such frequency fluctuations can be removed by electronic feedback. We present a hybrid stabilisation technique that uses both a Fabry-Perot confocal cavity and an atomic resonance to achieve excellent short and long term frequency stability. The system has been shown to reduce the laser linewidth of an external cavity diode laser by an order of magnitude to 140 kHz, while limiting frequency excursions to 60 kHz relative to an absolute reference over periods of several hours. The scheme also presents a simple way to frequency offset two lasers many gigahertz apart which should find a use in atom cooling experiments, where hyperfine ground-state frequency separations are often required.
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We demonstrate that the dynamics of an autonomous chaotic laser can be controlled to a periodic or steady state under self-synchronization. In general, past the chaos threshold the dependence of the laser output on feedback applied to the pump is submerged in the Lorenz-like chaotic pulsation. However there exist specific feedback delays that stabilize the chaos to periodic behavior or even steady state. The range of control depends critically on the feedback delay time and amplitude. Our experimental results are compared with the complex Lorenz equations which show good agreement.
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We propose a simple modification of the experimental scheme employed by Brune rt ni. [Phys. Rev. Lett. 79, 4887 (1996)] for the generation and detection of a Schrodinger cat state, in which the decoherence of the cat state can be significantly slowed down using an appropriate feedback.
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A feedback model based on direct photodetection and micromaser-like atomic injection is proposed for the preservation of quantum coherence in a cavity. We show that in this way it is possible to slow down significantly the decoherence of Schrodinger cat states.
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Objective: The objective of this study is to evaluate the visual feedback influence on pelvic floor muscle contraction. Study design: Seventeen nulliparous, urinary-continent women participated in this study. Pelvic floor muscle strength with and without the use of visual feedback was measured with a dynamometric speculum in two directions (anteroposterior and left-right). To compare the mean strength values with and without the use of visual feedback, the t test was applied. Results: There was no significant difference between the pelvic floor muscle anteroposterior strength values with and without the use of visual feedback (p = 0.30), and no significant difference for the left-right strength (p = 0.37). Conclusion: There was no difference between the pelvic floor muscle strength values with and without the use of visual feedback. (C) 2010 Elsevier Ireland Ltd. All rights reserved.