937 resultados para Power Line Communication


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The demand for electricity is constantly growing in contemporary world and, in the same time, quality and reliability requirements are becoming more rigid. In addition, renewable sources of energy have been widely introduced for power generation, and they create specific challenges for the network. Consequently, new solution for distribution system is required, and Low Voltage Direct Current (LVDC) system is the proposed one. This thesis focuses on the investigation of specific cable features for low voltage direct current (LVDC) distribution system. The LVDC system is public ±750 VDC distribution system, which is currently being developed at Lappeen-ranta University of Technology. The aspects, considered in the thesis, are reliable and economic power transmission in distribution networks and possible power line communication in the LVDC cable.

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Production and generation of electrical power is evolving to more environmental friendly technologies and schemes. Pushed by the increasing cost of fossil fuels, the operational costs of producing electrical power with fossil fuels and the effect in the environment, like pollution and global warming, renewable energy sources gain con-stant impulse into the global energy economy. In consequence, the introduction of distributed energy sources has brought a new complexity to the electrical networks. In the new concept of smart grids and decen-tralized power generation; control, protection and measurement are also distributed and requiring, among other things, a new scheme of communication to operate with each other in balance and improve performance. In this research, an analysis of different communication technologies (power line communication, Ethernet over unshielded twisted pair (UTP), optic fiber, Wi-Fi, Wi-MAX, and Long Term Evolution) and their respective characteristics will be carried out. With the objective of pointing out strengths and weaknesses from different points of view (technical, economical, deployment, etc.) to establish a richer context on which a decision for communication approach can be done depending on the specific application scenario of a new smart grid deployment. As a result, a description of possible optimal deployment solutions for communication will be shown considering different options for technologies, and a mention of different important considerations to be taken into account will be made for some of the possible network implementation scenarios.

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There are many different ways to communicate on-line now days from chat rooms, forums to e-mail, instant messaging, blogs and personal spaces. Some have clearly stated rules and some depend on unwritten codes of behaviour. Here are a few general tips provided that will hopefully make those occasions where learning and teaching are taking place more worthwhile.

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Health monitoring technologies such as Body Area Network (BAN) systems has gathered a lot of attention during the past few years. Largely encouraged by the rapid increase in the cost of healthcare services and driven by the latest technological advances in Micro-Electro-Mechanical Systems (MEMS) and wireless communications. BAN technology comprises of a network of body worn or implanted sensors that continuously capture and measure the vital parameters such as heart rate, blood pressure, glucose levels and movement. The collected data must be transferred to a local base station in order to be further processed. Thus, wireless connectivity plays a vital role in such systems. However, wireless connectivity comes at a cost of increased power usage, mainly due to the high energy consumption during data transmission. Unfortunately, battery-operated devices are unable to operate for ultra-long duration of time and are expected to be recharged or replaced once they run out of energy. This is not a simple task especially in the case of implanted devices such as pacemakers. Therefore, prolonging the network lifetime in BAN systems is one of the greatest challenges. In order to achieve this goal, BAN systems take advantage of low-power in-body and on-body/off-body wireless communication technologies. This paper compares some of the existing and emerging low-power communication protocols that can potentially be employed to support the rapid development and deployment of BAN systems.

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Power line interference is one of the main problems in surface electromyogram signals (EMG) analysis. In this work, a new method based on the stationary wavelet packet transform is proposed to estimate and remove this kind of noise from EMG data records. The performance has been quantitatively evaluated with synthetic noisy signals, obtaining good results independently from the signal to noise ratio (SNR). For the analyzed cases, the obtained results show that the correlation coefficient is around 0.99, the energy respecting to the pure EMG signal is 98–104%, the SNR is between 16.64 and 20.40 dB and the mean absolute error (MAE) is in the range of −69.02 and −65.31 dB. It has been also applied on 18 real EMG signals, evaluating the percentage of energy respecting to the noisy signals. The proposed method adjusts the reduction level to the amplitude of each harmonic present in the analyzed noisy signals (synthetic and real), reducing the harmonics with no alteration of the desired signal.

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Mode of access: Internet.

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"A publication of the Technology Press, Massachusetts Institute of Technology."

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This Doctoral Thesis aims at studying, developing, and characterizing cutting edge equipment for EMC measurements and proposing innovative and advanced power line filter design techniques. This document summarizes a three-year work, is strictly industry oriented and relies on EMC standards and regulations. It contains the main results, findings, and effort with the purpose of bringing innovative contributions at the scientific community. Conducted emissions interferences are usually suppressed with power line filters. These filters are composed by common mode chokes, X capacitors and Y capacitors in order to mitigate both the differential mode and common mode noise, which compose the overall conducted emissions. However, even at present days, available power line filter design techniques show several disadvantages. First of all, filters are designed to be implemented in ideal 50 Ω systems, condition which is far away from reality. Then, the attenuation introduced by the filter for common or differential mode noise is analyzed independently, without considering the possible mode conversion that can be produced by impedance mismatches, or asymmetries in either the power line filter itself or the equipment under test. Ultimately, the instrumentation used to perform conducted emissions measurement is, in most cases, not adequate. All these factors lead to an inaccurate design, contributing at increasing the size of the filter, making it more expensive and less performant than it should be.

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With the current complexity of communication protocols, implementing its layers totally in the kernel of the operating system is too cumbersome, and it does not allow use of the capabilities only available in user space processes. However, building protocols as user space processes must not impair the responsiveness of the communication. Therefore, in this paper we present a layer of a communication protocol, which, due to its complexity, was implemented in a user space process. Lower layers of the protocol are, for responsiveness issues, implemented in the kernel. This protocol was developed to support large-scale power-line communication (PLC) with timing requirements.

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Sähkömoottorin jatkuva-aikainen kunnonvalvonta vaatii tiedonsiirtoa moottorilta ylemmälle tietojärjestelmätasolle, kuten taajuusmuuttajalle. Uusien kaapeleiden asennus on työlästä ja kallista. Moottorin ja taajuusmuuttajan välillä on kuitenkin aina kaapeli, jota käytetään moottorin tehonsyöttöön. Tätä kaapelia on mahdollista käyttää myös tiedonsiirtokanavana. Tässä diplomityössä käsitellään ja tutkitaan sähköverkkotiedonsiirtomenetelmää, jonka avulla voidaan muodostaa Ethernet-yhteys moottorilta taajuusmuuttajalle tai toisinpäin. Työssä kehitetään simulointimalli tiedonsiirtokanavan taajuusriippuvan vaimennuksen simuloimiseen. Lisäksi kehitetään kytkentärajapinta, joka mahdollistaa tiedonsiirron kolmivaiheisessa taajuusmuuttajan syöttämässä moottorikaapelissa. Työssä suunnitellaan ja toteutetaan tiedonsiirtoa varten pilot-laitteisto, jolla tehdään laboratoriotestit. Laboratoriotesteillä varmistetaan menetelmän soveltuvuus. Laboratoriotestien avulla etsitään myös reunaehdot tiedonsiirron toiminnalle ja tiedonsiirtonopeuteen vaikuttavia tekijöitä taajuusmuuttajakäytössä. Lisäksi tarkastellaan menetelmän aiheuttamaa viivettä, joka on tärkeäsäätösovellusten kannalta. Lopuksi arvioidaan menetelmän soveltuvuus käytännön sovelluksiin.

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Sähköenergiamittareiden etälukuun (AMR) siirtyminen on kasvanut Suomessa, kuten muissakin Euroopan maissa viime vuosina merkittävästi. Tavoitteena on, että vuonna 2014 80 % kaikista Suomen sähköenergiamittareista olisi etäluettavia ja rekisteröisivät tunnittaiset kulutustiedot. AMR-tekniikan avulla voidaan toteuttaa myös muita palveluja kulutustietojen rekisteröinnin lisäksi. AMR-mittareiden etäluenta ja niiden kautta siirrettävät signaalit vaativat mittareilta tiedonsiirtotapoja. Työssä tarkastellaan TeliaSoneran AMR-palvelualustan ominaisuuksia ja arkkitehtuuria. Selvitetään AMR-mittareiden toiminnallisia vaatimuksia ja mahdollisia tiedonsiirtotapoja mittareiden ja etäluentajärjestelmän välillä. Arvioidaan näiden selvitysten perusteella ja myös kustannusten kannalta eri tiedonsiirtomenetelmien soveltuvuutta eri ympäristöihin. Lisäksi suoritetaan arviointi ja käytännön laboratoriotestauksia valitulle sähköverkkoa tiedonsiirrossa hyödyntävälle AMR-mittarille. Tavoitteena on selvittää ja analysoida vertailtavan mittarin yhteensopivuutta TeliaSoneran päätelaitteiden ja AMR-palvelualustan kanssa. Analysoidaan näiden tarkasteltavien mittareiden ominaisuuksia ja elinkaarta. Laboratoriotesteillä selvitetään myös tarkasteltavien sähköverkkotiedonsiirto AMRmittareiden häiriösietoisuutta verkossa esiintyviä häiriöitä vastaan. Näiden pohjalta tehdään johtopäätökset ja suositukset.

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Yleisesti sähkönjakelussa käytettyä vaihtosähköä ollaan korvaamassa tasasähköllä pienjänniteverkoissa. Vaihtojännitteeseen verrattuna tasajännitteen käyttö mahdollistaa korkeampien jännitetasojen käytön ja paremman sähkönlaadun ja sitä kautta paremman käyttövarmuuden. Sähköverkossa käytettävien muuntajien ja suuntaajien osalta tarvitaan uudenlaisia rakenteita ja kehitystä, että tasajännitejakelun käyttöönotto olisi mahdollista. Oikeiden ratkaisujen löytämiseksi on tehty jo paljon tutkimusta, mutta valmiita järjestelmiä ei vielä ole laajemmin otettu käyttöön. Tasajänniteverkot tarvitsevat myös ohjauksen, säädön ja valvonnan takia tiedonsiirto-ominaisuuksia. Tietoa on mahdollista siirtää samassa kaapelissa, jota käytetään myös sähkön siirtoon. Haasteita asettavat mm. kaapeliin kytketyminen ja tiedonsiirtokanavassa esiintyvät häiriöt. Työssä muodostetaan malli tiedonsiirtokanavasta, jonka avulla voidaan mallintaa verkon käyttäytymistä eri taajuuksilla sekä simuloida sähköverkkoon muodostettavia tiedonsiirtokanavia.

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Power line modelling has become an interesting research area in recent years as a result of advances in the power line distribution network system. Extensive knowledge about the power line cable characteristics can be implemented in a software algorithm in a modern broadband power-line communication modem. In this study, a novel approach for modelling power line cables (AMCMK) based on the broadband impedance spectroscopy (BIS) and transmission line matrix (TLM) techniques is recommended in characterizing a healthy cable and the various faults associated with low-voltage cables for both open and short circuit situation. Models for different cable conditions are developed and tuned, which include six models for both healthy and faulty cables situations. The models are on the basis of impedance response analysis of the cable. The resulting spectra from the simulations are also cross-correlated to determine the degree of similarities between the healthy cable spectra and their respective faulty spectra.