915 resultados para Signal-noise relation


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In this paper, an input receiver with a hysteresis characteristic that can work at voltage levels between 0.9 V and 5 V is proposed. The input receiver can be used as a wide voltage range Schmitt trigger also. At the same time, reliable circuit operation is ensured. According to the research findings, this is the first time a wide voltage range Schmitt trigger is being reported. The proposed circuit is compared with previously reported input receivers, and it is shown that the circuit has better noise immunity. The proposed input receiver ends the need for a separate Schmitt trigger and input buffer. The frequency of operation is also higher than that of the previously reported receiver. The circuit is simulated using HSPICE at 035-mu m standard thin oxide technology. Monte Carlo analysis is conducted at different process conditions, showing that the proposed circuit works well for different process conditions at different voltage levels of operation. A noise impulse of (V-CC/2) magnitude is added to the input voltage to show that the receiver receives the correct logic level even in the presence of noise. Here, V-CC is the fixed voltage supply of 3.3 V.

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In a general way, in an electric power utility the current transformers (CT) are used to measurement and protection of transmission lines (TL) 1 The Power Line Carriers systems (PLC) are used for communication between electrical substations and transmission line protection. However, with the increasing use of optical fiber to communication (due mainly to its high data transmission rate and low signal-noise relation) this application loses potentiality. Therefore, other functions must be defined to equipments that are still in using, one of them is detecting faults (short-circuits) and transmission lines insulator strings damages 2. The purpose of this paper is to verify the possibility of using the path to the ground offered by the CTs instead of capacitive couplings / capacitive potential transformers to detect damaged insulators, since the current transformers are always present in all transmission lines (TL's) bays. To this a comparison between this new proposal and the PLC previous proposed system 2 is shown, evaluating the economical and technical points of view. ©2010 IEEE.

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The Q parameter scales differently with the noise power for the signal-noise and the noise-noise beating terms in scalar and vector models. Some procedures for including noise in the scalar model largely under-estimate the Q parameter.

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In this Letter, we theoretically and numerically analyze the performance of coherent optical transmission systems that deploy inline or transceiver based nonlinearity compensation techniques. For systems where signal-signal nonlinear interactions are fully compensated, we find that beyond the performance peak the signal-to-noise ratio degradation has a slope of 3 dBSNR/dBPower suggesting a quartic rather than quadratic dependence on signal power. This is directly related to the fact that signals in a given span will interact not only with linear amplified spontaneous emission noise, but also with the nonlinear four-wave mixing products generated from signal-noise interaction in previous (hitherto) uncompensated spans. The performance of optical systems employing different nonlinearity compensation schemes were numerically simulated and compared against analytical predictions, showing a good agreement within a 0.4 dB margin of error.

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In this paper, the spectral relation between the master and the frequency-locked slave laser (FLSL) is investigated by the conventional technique of optical intensity modulation and optical heterodyne. Experimentally, we demonstrate that under complete and stable locking condition, the lightwave of the FLSL and the sidebands of the master laser produced by the optical intensity modulation are perfectly coherent (frequency coherence). Referring to our recent studies, the lightwave of the master laser and its corresponding sidebands are also perfectly coherent. Additionally, the spectral structures of two perfectly coherent lightwaves are identical in the level of wave train. Therefore, we indirectly verify that the spectral structures of the FLSL and the master laser are identical in the level of wave train.

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This present paper reviews the reliability and validity of visual analogue scales (VAS) in terms of (1) their ability to predict feeding behaviour, (2) their sensitivity to experimental manipulations, and (3) their reproducibility. VAS correlate with, but do not reliably predict, energy intake to the extent that they could be used as a proxy of energy intake. They do predict meal initiation in subjects eating their normal diets in their normal environment. Under laboratory conditions, subjectively rated motivation to eat using VAS is sensitive to experimental manipulations and has been found to be reproducible in relation to those experimental regimens. Other work has found them not to be reproducible in relation to repeated protocols. On balance, it would appear, in as much as it is possible to quantify, that VAS exhibit a good degree of within-subject reliability and validity in that they predict with reasonable certainty, meal initiation and amount eaten, and are sensitive to experimental manipulations. This reliability and validity appears more pronounced under the controlled (but more arti®cial) conditions of the laboratory where the signal : noise ratio in experiments appears to be elevated relative to real life. It appears that VAS are best used in within-subject, repeated-measures designs where the effect of different treatments can be compared under similar circumstances. They are best used in conjunction with other measures (e.g. feeding behaviour, changes in plasma metabolites) rather than as proxies for these variables. New hand-held electronic appetite rating systems (EARS) have been developed to increase reliability of data capture and decrease investigator workload. Recent studies have compared these with traditional pen and paper (P&P) VAS. The EARS have been found to be sensitive to experimental manipulations and reproducible relative to P&P. However, subjects appear to exhibit a signi®cantly more constrained use of the scale when using the EARS relative to the P&P. For this reason it is recommended that the two techniques are not used interchangeably

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Impedance inversion is very important in seismic technology. It is based on seismic profile. Good inversion result is derived from high quality seismic profile, which is formed using high resolution imaging resolution. High-resolution process demands that signal/noise ratio is high. It is very important for seismic inversion to improve signal/noise ratio. the main idea is that the physical parameter (wave impedance), which describes the stratigraphy directly, is achieved from seismic data expressing structural style indirectly. The solution of impedance inversion technology, which is based on convolution model, is arbitrary. It is a good way to apply the priori information as the restricted condition in inversion. An updated impedance inversion technology is presented which overcome the flaw of traditional model and highlight the influence of structure. Considering impedance inversion restricted by sedimentary model, layer filling style and congruence relation, the impedance model is built. So the impedance inversion restricted by geological rule could be realized. there are some innovations in this dissertation: 1. The best migration aperture is achieved from the included angle of time surface of diffracted wave and reflected wave. Restricted by structural model, the dip of time surface of reflected wave and diffracted wave is given. 2. The conventional method of FXY forcasting noise is updated, and the signal/noise ratio is improved. 3. Considering the characteristic of probability distribution of seismic data and geological events fully, an object function is constructed using the theory of Bayes estimation as the criterion. The mathematics is used here to describe the content of practice theory. 4. Considering the influence of structure, the seismic profile is interpreted to build the model of structure. A series of structure model is built. So as the impedance model. The high frequency of inversion is controlled by the geological rule. 5. Conjugate gradient method is selected to improve resolving process for it fit the demands of geophysics, and the efficiency of algorithm is enhanced. As the geological information is used fully, the result of impedance inversion is reasonable and complex reservoir could be forecasted further perfectly.

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The standard models for statistical signal extraction assume that the signal and noise are generated by linear Gaussian processes. The optimum filter weights for those models are derived using the method of minimum mean square error. In the present work we study the properties of signal extraction models under the assumption that signal/noise are generated by symmetric stable processes. The optimum filter is obtained by the method of minimum dispersion. The performance of the new filter is compared with their Gaussian counterparts by simulation.

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The performance of a carbon paste electrode (CPE) modified with SBA-15 nanostructured silica organofunctionalised with 2-benzothiazolethiol in the simultaneous determination of Pb(II), Cu(II) and Hg(II) ions in natural water and sugar cane spirit (cachaca) is described. Pb(II), Cu(II) and Hg(II) were pre-concentrated on the surface of the modified electrode by complexing with 2-benzothiazolethiol and reduced at a negative potential (-0.80 V). Then the reduced products were oxidised by DPASV procedure. The fact that three stripping peaks appeared on the voltammograms at the potentials of -0.48 V (Pb2+), -0.03 V (Cu2+) and +0.36 V (Hg2+) in relation to the SCE, demonstrates the possibility of simultaneous determination of Pb2+, Cu2+ and Hg2+. The best results were obtained under the following optimised conditions: 100 mV pulse amplitude, 3 min accumulation time, 25 mV s(-1) scan rate in phosphate solution pH 3.0. Using such parameters, calibration graphs were linear in the concentration ranges of 3.00-70.0 x 10(-7) mol L-1 (Pb2+), 8.00-100.0 X 10(-7) mol L-1 (Cu2+) and 2.00-10.0 x 10(-6) mol L-1 (Hg2+). Detection limits of 4.0 x 10(-8) mol L-1 (Pb2+), 2.0 x 10(-7) mol L-1 (Cu2+) and 4.0 x 10(-7) mol L-1 (Hg2+) were obtained at the signal noise ratio (SNR) of 3. The results indicate that this electrode is sensitive and effective for simultaneous determination of Pb2+, Cu2+ and Hg2+ in the analysed samples. (C) 2008 Published by Elsevier B.V.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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A simulação de uma seção sísmica de afastamento-nulo (AN) a partir de dados de cobertura múltipla pode ser realizada através do empilhamento sísmico, o qual é um método de imageamento de reflexão sísmica muito utilizado na indústria. O processo de empilhamento sísmico permite reduzir a quantidade de dados e melhorar a razão sinal/ruído. Baseado na aproximação hiperbólica dos tempos de trânsito dependente de três parâmetros ou atributos cinemáticos de frentes de onda. Recentemente, vem desenvolvendo-se um novo método para simular seções (AN) chamado método de empilhamento sísmico por Superfície de Reflexão Comum (ou empilhamento SRC). Este novo formalismo pode ser estendido para construir seções de afastamento-nulo (AN) a partir de dados de cobertura múltipla, usando aproximações dos tempos de trânsito paraxiais na vizinhança de um raio central com afastamento-nulo (AN), para o caso de uma linha de medição com topografia suave e rugosa. Essas duas aproximações de tempos de trânsito também dependem de três atributos cinemáticos de frentes de ondas. Nesta dissertação, apresenta-se uma revisão teórica da teoria paraxial do raio para a obtenção das aproximações dos tempos de trânsito paraxiais considerando uma linha de medição com topografia rugosa e suave. A partir das aproximações dos tempos de trânsito paraxiais em relação a um raio central com afastamento-nulo (AN), foram obtidas duas novas aproximações de tempos de trânsito usando a condição de um ponto difrator em profundidade, reduzindo as equações originais para dois parâmetros. Também foram obtidas as aproximações para o caso de raios paraxiais com afastamento-nulo (AN). Para as aproximações de reflexão e difração utilizando um mesmo modelo sintético, foram comparadas através da representação gráfica as superfícies de empilhamento das aproximações dos tempos de trânsito para a topografia suave e rugosa. Em seguida, para analisar o comportamento dos operadores associados a reflexão e a difração, quando estes são perturbados, discutimos suas sensibilidades em relação a cada um dos três parâmetros (β0, KPIN, KN). Esta análise de sensibilidade foi realizada em duas formas: Sensibilidade através da perturbação de cada parâmetro visualizado nas superfícies de empilhamento SRC-TR e SDC-TR e da primeira derivada dos tempos de trânsito SRC-TR e SDC-TR. Finalmente, usando essas aproximações hiperbólicas em função de três e dois parâmetros e com base nos resultados da análise de sensibilidade, foi proposto um algoritmo para simular seções AN a partir de dados de cobertura múltipla.

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For many years, RF and analog integrated circuits have been mainly developed using bipolar and compound semiconductor technologies due to their better performance. In the last years, the advance made in CMOS technology allowed analog and RF circuits to be built with such a technology, but the use of CMOS technology in RF application instead of bipolar technology has brought more issues in terms of noise. The noise cannot be completely eliminated and will therefore ultimately limit the accuracy of measurements and set a lower limit on how small signals can be detected and processed in an electronic circuit. One kind of noise which affects MOS transistors much more than bipolar ones is the low-frequency noise. In MOSFETs, low-frequency noise is mainly of two kinds: flicker or 1/f noise and random telegraph signal noise (RTS). The objective of this thesis is to characterize and to model the low-frequency noise by studying RTS and flicker noise under both constant and switched bias conditions. The effect of different biasing schemes on both RTS and flicker noise in time and frequency domain has been investigated.

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El incremento de la población con acceso a la televisión a mediados del siglo XX hizo necesaria la implantación de una normativa que regulara el acceso a este servicio a través de las infraestructuras comunes de telecomunicación. Estas infraestructuras están formadas por diversos elementos que pueden alterar los parámetros de calidad de la señal de televisión radiodifundida, actualmente bajo norma DVB-T. Normalmente, los diseños de las redes se hacen atendiendo a las atenuaciones que presentan los dispositivos pero sin tener en cuenta la influencia de los mismos sobre los parámetros de calidad de la señal. Por ello, es necesario conocer esta influencia para que, a la hora de diseñar una red, se cumplan no solo los requisitos de nivel de señal en las tomas de usuario sino que también se han de cumplir los requisitos de calidad (MER, relación portadora a ruido, CBER). Para llevar a cabo este estudio, en primer lugar es necesario conocer los equipos de generación y medida de señales DVB-T. El conocimiento de las características de estos equipos, las funciones que pueden realizar y sus limitaciones ayudan a llevar a cabo un buen estudio de los parámetros de calidad de la señal. Posteriormente, se realiza un estudio individual de los elementos utilizados para la construcción de una red de distribución de señal de televisión digital terrestre con el objetivo de comprobar su comportamiento en frecuencia, ya que según los fabricantes su respuesta en frecuencia es plana, y su influencia sobre la calidad de la señal. Además, se utilizarán elementos de distintas características para conocer la influencia de dichas características sobre los parámetros de calidad. Una vez llevado a cabo este estudio individual, se construye una infraestructura común de telecomunicaciones para realizar las medidas necesarias en las tomas de usuario y en puntos intermedios para así conocer cómo empeora la calidad de la señal a lo largo de este tipo de redes. ABSTRACT. The increase in population with access to television services in the middle of the 20th century, made it necessary to set a new rule to regulate this service access through the common telecommunications infrastructures. These infrastructures are composed by different elements which can alter the parameters of quality of the broadcasted television signal, nowadays under DVB-T standard. Networks design are usually made taking into account the loss of each device but without taking into account the influence on the quality parameters of the signal. Because of that, it is necessary to know this influence in order to meet not only the level requirements but also the quality requirements (MER, carrier-to-noise relation, CBER). To carry out this study, it is first necessary to understand the generation and measurement DVB-T signal equipment. The knowledge of the characteristics of these devices, their functions and limitations help to carry out a good study of the signal quality parameters. Subsequently, an individual examination of the elements used to build a distribution network of digital terrestrial television is performed in order to check its frequency dependence, since according to manufacturers’ datasheets the frequency is flat, and its influence on the signal quality parameters. In addition, elements of different characteristics are used to determine the influence of these characteristics on the quality parameters. Once done this single study, a common telecommunications infrastructure is built to perform the necessary measurements at the user points and at intermediate points in order to know how the quality of the signal over this kind of networks.