911 resultados para STOP SIGNAL


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In this two-part series of papers, a generalized non-orthogonal amplify and forward (GNAF) protocol which generalizes several known cooperative diversity protocols is proposed. Transmission in the GNAF protocol comprises of two phases - the broadcast phase and the cooperation phase. In the broadcast phase, the source broadcasts its information to the relays as well as the destination. In the cooperation phase, the source and the relays together transmit a space-time code in a distributed fashion. The GNAF protocol relaxes the constraints imposed by the protocol of Jing and Hassibi on the code structure. In Part-I of this paper, a code design criteria is obtained and it is shown that the GNAF protocol is delay efficient and coding gain efficient as well. Moreover GNAF protocol enables the use of sphere decoders at the destination with a non-exponential Maximum likelihood (ML) decoding complexity. In Part-II, several low decoding complexity code constructions are studied and a lower bound on the Diversity-Multiplexing Gain tradeoff of the GNAF protocol is obtained.

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The problem of detecting an unknown transient signal in noise is considered. The SNR of the observed data is first enhanced using wavelet domain filter The output of the wavelet domain filter is then transformed using a Wigner-Ville transform,which separates the spectrum of the observed signal into narrow frequency bands. Each subband signal at the output of the Wigner-ville block is subjected kto wavelet based level dependent denoising (WBLDD)to supress colored noise A weighted sum of the absolute value of outputs of WBLDD is passed through an energy detector, whose output is used as test statistic to take the final decision. By assigning weights proportional to the energy of the corresponding subband signals, the proposed detector approximates a frequency domain matched filter Simulation results are presented to show that the performance of the proposed detector is better than that of the wavelet packet transform based detector.

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Constellation Constrained (CC) capacity regions of a two-user Gaussian Multiple Access Channel(GMAC) have been recently reported. For such a channel, code pairs based on trellis coded modulation are proposed in this paper with MPSK and M-PAM alphabet pairs, for arbitrary values of M,toachieve sum rates close to the CC sum capacity of the GMAC. In particular, the structure of the sum alphabets of M-PSK and M-PAMmalphabet pairs are exploited to prove that, for certain angles of rotation between the alphabets, Ungerboeck labelling on the trellis of each user maximizes the guaranteed squared Euclidean distance of the sum trellis. Hence, such a labelling scheme can be used systematically,to construct trellis code pairs to achieve sum rates close to the CC sum capacity. More importantly, it is shown for the first time that ML decoding complexity at the destination is significantly reduced when M-PAM alphabet pairs are employed with almost no loss in the sum capacity.

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We propose a unified model for large signal and small signal non-quasi-static analysis of long channel symmetric double gate MOSFET. The model is physics based and relies only on the very basic approximation needed for a charge-based model. It is based on the EKV formalism Enz C, Vittoz EA. Charge based MOS transistor modeling. Wiley; 2006] and is valid in all regions of operation and thus suitable for RF circuit design. Proposed model is verified with professional numerical device simulator and excellent agreement is found. (C) 2010 Elsevier Ltd. All rights reserved.

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Inverse filters are conventionally used for resolving overlapping signals of identical waveshape. However, the inverse filtering approach is shown to be useful for resolving overlapping signals, identical or otherwise, of unknown waveshapes. Digital inverse filter design based on autocorrelation formulation of linear prediction is known to perform optimum spectral flattening of the input signal for which the filter is designed. This property of the inverse filter is used to accomplish composite signal decomposition. The theory has been presented assuming constituent signals to be responses of all-pole filters. However, the approach may be used for a general situation.

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Static characteristics of an analog-to-digital converter (ADC) can be directly determined from the histogram-based quasi-static approach by measuring the ADC output when excited by an ideal ramp/triangular signal of sufficiently low frequency. This approach requires only a fraction of time compared to the conventional dc voltage test, is straightforward, is easy to implement, and, in principle, is an accepted method as per the revised IEEE 1057. However, the only drawback is that ramp signal sources are not ideal. Thus, the nonlinearity present in the ramp signal gets superimposed on the measured ADC characteristics, which renders them, as such, unusable. In recent years, some solutions have been proposed to alleviate this problem by devising means to eliminate the contribution of signal source nonlinearity. Alternatively, a straightforward step would be to get rid of the ramp signal nonlinearity before it is applied to the ADC. Driven by this logic, this paper describes a simple method about using a nonlinear ramp signal, but yet causing little influence on the measured ADC static characteristics. Such a thing is possible because even in a nonideal ramp, there exist regions or segments that are nearly linear. Therefore, the task, essentially, is to identify these near-linear regions in a given source and employ them to test the ADC, with a suitable amplitude to match the ADC full-scale voltage range. Implementation of this method reveals that a significant reduction in the influence of source nonlinearity can be achieved. Simulation and experimental results on 8- and 10-bit ADCs are presented to demonstrate its applicability.

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Tämä tutkielma keskittyy julkisen kaupunkitilan kontrollin eri muotoihin. Ihmiset käyttävät kaupunkitilaa eri tavoin ja eri tarkoituksiin. Tilan sallitut ja kielletyt käyttömuodot ovat aina erilaisten toiveiden yhteensovittamista: yhteisen neuvottelun tulos. Tilaa myös kontrolloidaan vastaamaan erilaisia toiveita ja odotuksia. Tutkielmassa julkisen tilan kontrollin muodot on jaettu kolmeen: tilan fyysinen muokkaaminen, tilan valvonta ja asenteisiin vaikuttaminen esimerkiksi politiikkaohjelmilla. Tärkeimpänä kiinnostuksen kohteena on tilanne, jossa jokin toiminta kielletään kokonaisuudessaan. Tutkielmassa käytetään konkreettisena esimerkkinä yrityksestä kontrolloida tilaa Helsingin kaupungin Stop Töhryille -projektia: kyseessä on tapaustutkimus em. projektista. Projekti toteutettiin vuosina 1998–2008 Helsingin kaupungin rakennusviraston sekä yleisten töiden lautakunnan alaisuudessa. Projektin tavoitteena oli vähentää ja poistaa kaupunkitilassa näkyviä graffiteja. Keinoina tähän oli tekninen siivous, valvonta ja viestintä. Graffitit voidaan nähdä yhtenä keinona vallata tilaa itselle. Tutkimuksen ongelmanasettelun taustalla on pohdinta siitä, kohdistuuko julkisen tilan kontrolli jonkin tietyn toiminnon ei-toivottavuuteen vai kohdistuuko kontrolli tiettyjen toimijoiden ei-toivottavuuteen. Tavoitteena on selvittää, minkälainen tilan kontrolliin tähtäävä ohjelma Stop Töhryille -projekti oli. Tutkimuskysymykset liittyvät siihen, miksi projekti toteutettiin, mihin projektin toimenpiteet kohdistuivat ja miten nollatoleranssi määriteltiin projektissa. Tutkielman teoreettinen viitekehys pohjautuu Jock Youngin määritelmälle nollatoleranssista, nollatoleranssin kritiikille sekä Henri Lefebvren, Don Mitchellin, Andrea Sharkeyn ja Rob Shieldsin kirjoituksiin oikeudesta tilaan. Aineistona käytetään yleisten töiden lautakunnan kokousten esityslista- ja pöytäkirjamateriaalia sekä haastatteluja projektissa mukana olleille tai projektiin vaikuttaneille tahoille (N=4). Analyysin menetelmänä sovelletaan diskurssianalyysiä. Aineiston perusteella voidaan todeta, että projektissa hyödynnettiin laajasti erilaisia kontrollin keinoja. Projektin toimenpiteet keskittyivät alussa enemmän toimintoon (graffitien puhdistamiseen ja ehkäisyyn), mutta viimeisinä vuosina painopiste siirtyi enemmän toimijaan (graffitintekijään). Aineiston analyysissä yhtenä olennaisena toimijaryhmänä esille nousivat nuoret ja nuoriso, jotka mainittiin useaan otteeseen graffitintekijöinä. Tutkielmassa tätä ilmiötä pohditaan Mike Presdeen nuoruuden kriminalisointi -käsitteen sekä Zygmunt Baumanin ulossulkemisen paradigman kautta. Nollatoleranssiretoriikka on löydettävissä projektista kolmella tasolla: ideologisella, toiminnallisella sekä viestinnällisellä. Nollatoleranssia perusteltiin ideologisella tasolla rikottujen ikkunoiden teesillä: pieniä sosiaalisia häiriöitä poistamalla voidaan ehkäistä suuria rikoksia. Tämä perustelu vietiin toiminnalliselle tasolle, jossa häiriökäyttäytyjiä valvottiin ja heille vaadittiin kovia rangaistuksia. Viestinnällä pyrittiin madaltamaan kansalaisten sietokykyä graffiti-ilmiöön ja edesautettiin mahdollisimman laajan kansalais- ja asukasyhteistyön syntymistä. Lisäksi projektissa luotiin aktiivisesti tiedon ja kielen politiikkaa, joissa tuotetaan käsitystä siitä että graffitit lisäävät turvattomuutta ja konstruoidaan sellainen kieli, jossa graffitit nähdään ongelmana.

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We propose a compact model for small signal non quasi static analysis of long channel symmetric double gate MOSFET The model is based on the EKV formalism and is valid in all regions of operation and thus suitable for RF circuit design Proposed model is verified with professional numerical device simulator and excellent agreement is found well beyond the cut-off frequency

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A new algorithm based on signal subspace approach is proposed for localizing a sound source in shallow water. In the first instance we assumed an ideal channel with plane parallel boundaries and known reflection properties. The sound source is assumed to emit a broadband stationary stochastic signal. The algorithm takes into account the spatial distribution of all images and reflection characteristics of the sea bottom. It is shown that both range and depth of a source can be measured accurately with the help of a vertical array of sensors. For good results the number of sensors should be greater than the number of significant images; however, localization is possible even with a smaller array but at the cost of higher side lobes. Next, we allowed the channel to be stochastically perturbed; this resulted in random phase errors in the reflection coefficients. The most singular effect of the phase errors is to introduce into the spectral matrix an extra term which may be looked upon as a signal generated coloured noise. It is shown through computer simulations that the signal peak height is reduced considerably as a consequence of random phase errors.

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Fractal Dimensions (FD) are one of the popular measures used for characterizing signals. They have been used as complexity measures of signals in various fields including speech and biomedical applications. However, proper interpretation of such analyses has not been thoroughly addressed. In this paper, we study the effect of various signal properties on FD and interpret results in terms of classical signal processing concepts such as amplitude, frequency, number of harmonics, noise power and signal bandwidth. We have used Higuchi's method for estimating FDs. This study may help in gaining a better understanding of the FD complexity measure itself, and for interpreting changing structural complexity of signals in terms of FD. Our results indicate that FD is a useful measure in quantifying structural changes in signal properties.

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The design of a dual-DSP microprocessor system and its application for parallel FFT and two-dimensional convolution are explained. The system is based on a master-salve configuration. Two ADSP-2101s are configured as slave processors and a PC/AT serves as the master. The master serves as a control processor to transfer the program code and data to the DSPs. The system architecture and the algorithms for the two applications, viz. FFT and two-dimensional convolutions, are discussed.

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This paper describes the work related to characterisation of an ultrasonic transducer fabricated in the laboratory. The response of the medium to the ultrasonic wave was obtained by converting the time domain signal to frequency domain, using the FFT algorithm. Cross-correlation technique was adopted to increase the S/N ratio in the raw time domain signal and subsequently, to determine the ultrasonic velocity in the medium.

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Unlike queens of typical primitively eusocial species, Ropalidia marginata queens are docile and non-interactive, and hence cannot be using dominance to maintain their status. It appears that the queen maintains reproductive monopoly through a pheromone, of which the Dufour's gland is at least one source. Here, we reconfirm earlier results showing that queens and workers can be correctly classified on a discriminant function using the compositions of their respective Dufour's glands, and also demonstrate consistent queen-worker differences based on categories of compounds and on single compounds also in some cases. Since the queen pheromone is expected to be an honest signal of the fecundity of a queen, we investigate the correlation of Dufour's gland compounds with ovarian activation of queens. Our study shows that Dufour's gland compounds in R. marginata correlate with the state of ovarian activation of queens, suggesting that such compounds may portray the fecundity of a queen, and may indeed function as honest signals of fertility.

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A novel detection technique to estimate the amount of chirp in fiber Bragg gratings (FBGs) is proposed. This method is based on the fact that reflectivity at central wavelength of FBG reflection changes with strain/temperature gradient (linear chirp) applied to the same. Transfer matrix approach was used to vary different grating parameters (length, strength and apodization) to optimize variation of reflectivity with linear chirp. Analysis is done for different sets of `FBG length-refractive index strength' combinations for which reflectivity vary linearly with linear chirp over a decent measurement range. This article acts as a guideline to choose appropriate grating parameters in designing sensing apparatus based on change in reflectivity at central wavelength of FBG reflection.

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Queens of the primitively eusocial wasp Ropalidia marginata appear to maintain reproductive monopoly through pheromone rather than through physical aggression. Upon queen removal, one of the workers (potential queen, PQ) becomes extremely aggressive but drops her aggression immediately upon returning the queen. If the queen is not returned, the PQ gradually drops her aggression and becomes the next queen of the colony. In a previous study, the Dufour's gland was found to be at least one source of the queen pheromone. Queen-worker classification could be done with 100% accuracy in a discriminant analysis, using the compositions of their respective Dufour's glands. In a bioassay, the PQ dropped her aggression in response to the queen's Dufour's gland macerate, suggesting that the queen's Dufour's gland contents mimicked the queen herself. In the present study, we found that the PQ also dropped her aggression in response to the macerate of a foreign queen's Dufour's gland. This suggests that the queen signal is perceived across colonies. This also suggests that the Dufour's gland in R. marginata does not contain information about nestmateship, because queens are attacked when introduced into foreign colonies, and hence PQ is not expected to reduce her aggression in response to a foreign queen's signal. The latter conclusion is especially significant because the Dufour's gland chemicals are adequate to classify individuals correctly not only on the basis of fertility status (queen versus worker) but also according to their colony membership, using discriminant analysis. This leads to the additional conclusion (and precaution) that the ability to statistically discriminate organisms using their chemical profiles does not necessarily imply that the organisms themselves can make such discrimination. (C) 2010 Elsevier Ltd. All rights reserved.