887 resultados para Distribution network reconfiguration problem


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The purpose of this master’s thesis was to analyze a case company’s distribution and its elements. With different distribution structure options a customer can be served with different ways. However, cost elements and service elements create different trade-offs. In this work the case company’s distribution’s present state was analyzed and conclusions were made. Based on these conclusions different alternatives for distribution were created. These different alternatives were analyzed through simulations and with more traditional calculations to compose the total operative costs of each alternative. Also other aspects were considered, such as required organizational changes and the possible better customer service. With the suggested 3-stock distribution structure shorter delivery times and possibly more punctual deliveries for products kept in stock could be achieved with the same operative costs as in current direct delivery model. Also, similar benefits could be achieved with other products with the 3-stock model.

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Suomessa sähkönjakeluverkon pääasialliset jännitetasot ovat 20 kV ja 400 V. 20 kV jännitetasolla sähkö viedään lähelle kuluttajia ja muunnetaan pienemmäksi lähellä asiakkaita. Haittapuolena on se, että 20 kV avojohtosähkönsiirtoverkko on hyvin vika-altis ja usein yhden haaran vikaantuessa monta muutakin jää ilman sähköä. Lisäksi hintavien ja suurien jakelumuuntajien määrä on suuri. Vaihtoehtona on toteuttaa osa sähkönjakelusta tasajännitteellä, jolloin tehollinen pienjännite olisi 400 V:a suurempi. Tällöin sähköä voitaisiin siirtää pidempiä matkoja ilman, että asiakaskohtaisia tai muutaman asiakkaan kattavia 20 kV siirtolinjoja tarvitsisi käyttää. Tämä edellyttää vaihtosuuntauksen toteuttamista kuluttajan päässä. Tässä työssä esiteltävällä 1 kVA:n tehoisella vaihtosuuntaajalla muodostetaan tasasähköjakeluverkosta saatavasta 750 V tasasähköstä yksivaiheista (230 VRMS, 50 Hz) verkkojännitettä. Laite on suunniteltu toteuttamaan galvaaninen erotus mahdollisimman hyvällä hyötysuhteella. Suurtaajuusmuuntajan mitoitus mahdollisimman hyvälle hyötysuhteelle on haastava tehtävä, koska vaatimuksia sille asettavat sekä syöttävä resonanssikonvertteri että syötettävä syklokonvertteri. Mitoituksessa on pyrittävä löytämään mahdollisimman hyvä hyötysuhde kustannusten ja toteutettavuuden suhteen.

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Sähkönkulutuksen kasvaessa jakeluverkossa syntyy yhä enemmän jännitteenalenemia, jotka ylittävät sähkön laatustandardin asettamat raja-arvot. Jännitteenalenemista kärsivät etenkin syrjäseuduilla asuvat ihmiset, joiden käyttökohteet sijaitsevat kaukana jakelumuuntajasta. Perinteinen tapa on ollut kasvattaa syöttävän jakelukaapelin poikkipinta-alaa ja vaihtaa jakelumuuntaja suurempaan ongelman ratkaisemiseksi, mutta investointi on kuitenkin kallis eikä välttämättä maksa itseään koskaan takaisin. On myös mahdollista, että aiempaa suuremman muuntajan tyhjäkäyntihäviöillä on huonontava vaikutus järjestelmän energiatehokkuuteen. Tällöin voi olla kokonaistaloudellisesti kannattavampaa liittää sähköverkkoon laite, jolla voidaan korjata jännitteenalenemia. Diplomityössä tutkitaan säästömuuntajaan perustuvaa jännitteenkorotinta, jolla voidaan vähentää jakeluverkon jännitteenalenemien aiheuttamia haittoja. Työssä tutkitaan laitteen eri kytkintopologioita sekä niiden ohjausmenetelmiä, joilla voidaan muuttaa säästömuuntajan käämikierrosmääriä sen ollessa kuormitettuna.

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The focus in this thesis is to study both technical and economical possibilities of novel on-line condition monitoring techniques in underground low voltage distribution cable networks. This thesis consists of literature study about fault progression mechanisms in modern low voltage cables, laboratory measurements to determine the base and restrictions of novel on-line condition monitoring methods, and economic evaluation, based on fault statistics and information gathered from Finnish distribution system operators. This thesis is closely related to master’s thesis “Channel Estimation and On-line Diagnosis of LV Distribution Cabling”, which focuses more on the actual condition monitoring methods and signal theory behind them.

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In this work, a controller for regulating the transients in water distribution networks is established. The control technique is the H¥ Control. The developed controller is applied to a water distribution network and the results of this application demonstrate that the technique allowed the establishment of a robust controller, capable of attenuating the disturbances in a suitable way, being effective in controlling the oscillations of the state variables in question.

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The Finnish electricity distribution sector, rural areas in particular, is facing major challenges because of the economic regulation, tightening supply security requirements and the ageing network asset. Therefore, the target in the distribution network planning and asset management is to develop and renovate the networks to meet these challenges in compliance with the regulations in an economically feasible way. Concerning supply security, the new Finnish Electricity Market Act limits the maximum duration of electricity supply interruptions to six hours in urban areas and 36 hours in rural areas. This has a significant impact on distribution network planning, especially in rural areas where the distribution networks typically require extensive modifications and renovations to meet the supply security requirements. This doctoral thesis introduces a methodology to analyse electricity distribution system development. The methodology is based on and combines elements of reliability analysis, asset management and economic regulation. The analysis results can be applied, for instance, to evaluate the development of distribution reliability and to consider actions to meet the tightening regulatory requirements. Thus, the methodology produces information for strategic decision-making so that DSOs can respond to challenges arising in the electricity distribution sector. The key contributions of the thesis are a network renovation concept for rural areas, an analysis to assess supply security, and an evaluation of the effects of economic regulation on the strategic network planning. In addition, the thesis demonstrates how the reliability aspect affects the placement of automation devices and how the reserve power can be arranged in a rural area network.

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In the doctoral dissertation, low-voltage direct current (LVDC) distribution system stability, supply security and power quality are evaluated by computational modelling and measurements on an LVDC research platform. Computational models for the LVDC network analysis are developed. Time-domain simulation models are implemented in the time-domain simulation environment PSCAD/EMTDC. The PSCAD/EMTDC models of the LVDC network are applied to the transient behaviour and power quality studies. The LVDC network power loss model is developed in a MATLAB environment and is capable of fast estimation of the network and component power losses. The model integrates analytical equations that describe the power loss mechanism of the network components with power flow calculations. For an LVDC network research platform, a monitoring and control software solution is developed. The solution is used to deliver measurement data for verification of the developed models and analysis of the modelling results. In the work, the power loss mechanism of the LVDC network components and its main dependencies are described. Energy loss distribution of the LVDC network components is presented. Power quality measurements and current spectra are provided and harmonic pollution on the DC network is analysed. The transient behaviour of the network is verified through time-domain simulations. DC capacitor guidelines for an LVDC power distribution network are introduced. The power loss analysis results show that one of the main optimisation targets for an LVDC power distribution network should be reduction of the no-load losses and efficiency improvement of converters at partial loads. Low-frequency spectra of the network voltages and currents are shown, and harmonic propagation is analysed. Power quality in the LVDC network point of common coupling (PCC) is discussed. Power quality standard requirements are shown to be met by the LVDC network. The network behaviour during transients is analysed by time-domain simulations. The network is shown to be transient stable during large-scale disturbances. Measurement results on the LVDC research platform proving this are presented in the work.

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Kotkan jakelualueella käytetään historiallisista syistä keskijänniteverkossa kahta jänniteta-soa, 10 kV ja 20 kV. Eri jännitetasojen lisäksi Kotkan jakelualueen 110/20 päämuuntajien kytkentäryhmänä on käytössä YNyn0, kun taas muualla verkossa käytetään YNd11 kyt-kentäryhmää. Jännitetasoista ja kytkentäryhmistä johtuen Kotkan jakeluverkon yhteenkyt-kettävyys ympäröivän verkon kanssa on haastavaa. Työn tavoitteena on selvittää Kotkan kaupungin keskijänniteverkon nykytila ja käytettä-vyys häiriötilanteissa pahimpana mahdollisena aikana, sekä löytää mahdolliset ongelma-kohdat. Verkon nykytila tarkasteltiin verkkotietojärjestelmän avulla käyttäen laskennallisia tuloksia, jotka skaalattiin vastaamaan kovemman pakkastalven kuormitusta. Skaalaus teh-tiin useamman vuoden takaiseen tilanteeseen, jolloin yleinen taloustilanne oli parempi ja verkon kuormitus suurempi, jolloin verkko ei tule alimitoitetuksi taloustilanteen parantuessa. Tulevaisuuden varalta muodostettiin alueen tulevaisuuden kuormitusennusteet käyttämällä historiatietoja sekä tulevaisuuden näkymiä apuna. Työn keskeisimmäksi sisällöksi muodostui selvittää tarve usean käyttöjännitteen säilyttä-miselle sekä erilaisten kytkentäryhmien ylläpitämiseen ja kosketusjänniteongelman ratkai-seminen. Alueen sähköverkon kehittämiseksi tehtiin useita eri vaihtoehtoja, joita vertailtiin elinkaarikustannusperiaatteella toisiinsa. Vertailun pohjalta saatiin investointistrategia ehdo-tukset, joiden pohjalta verkkoyhtiö voi tehdä tulevaisuuteen sijoittuvia ratkaisuja.

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The electricity distribution sector will face significant changes in the future. Increasing reliability demands will call for major network investments. At the same time, electricity end-use is undergoing profound changes. The changes include future energy technologies and other advances in the field. New technologies such as microgeneration and electric vehicles will have different kinds of impacts on electricity distribution network loads. In addition, smart metering provides more accurate electricity consumption data and opportunities to develop sophisticated load modelling and forecasting approaches. Thus, there are both demands and opportunities to develop a new type of long-term forecasting methodology for electricity distribution. The work concentrates on the technical and economic perspectives of electricity distribution. The doctoral dissertation proposes a methodology to forecast electricity consumption in the distribution networks. The forecasting process consists of a spatial analysis, clustering, end-use modelling, scenarios and simulation methods, and the load forecasts are based on the application of automatic meter reading (AMR) data. The developed long-term forecasting process produces power-based load forecasts. By applying these results, it is possible to forecast the impacts of changes on electrical energy in the network, and further, on the distribution system operator’s revenue. These results are applicable to distribution network and business planning. This doctoral dissertation includes a case study, which tests the forecasting process in practice. For the case study, the most prominent future energy technologies are chosen, and their impacts on the electrical energy and power on the network are analysed. The most relevant topics related to changes in the operating environment, namely energy efficiency, microgeneration, electric vehicles, energy storages and demand response, are discussed in more detail. The study shows that changes in electricity end-use may have radical impacts both on electrical energy and power in the distribution networks and on the distribution revenue. These changes will probably pose challenges for distribution system operators. The study suggests solutions for the distribution system operators on how they can prepare for the changing conditions. It is concluded that a new type of load forecasting methodology is needed, because the previous methods are no longer able to produce adequate forecasts.

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Over the recent years, smart grids have received great public attention. Many proposed functionalities rely on power electronics, which play a key role in the smart grid, together with the communication network. However, “smartness” is not the driver that alone motivates the research towards distribution networks based on power electronics; the network vulnerability to natural hazards has resulted in tightening requirements for the supply security, set both by electricity end-users and authorities. Because of the favorable price development and advancements in the field, direct current (DC) distribution has become an attractive alternative for distribution networks. In this doctoral dissertation, power electronic converters for a low-voltage DC (LVDC) distribution system are investigated. These include the rectifier located at the beginning of the LVDC network and the customer-end inverter (CEI) on the customer premises. Rectifier topologies are introduced, and according to the LVDC system requirements, topologies are chosen for the analysis. Similarly, suitable CEI topologies are addressed and selected for study. Application of power electronics into electricity distribution poses some new challenges. Because the electricity end-user is supplied with the CEI, it is responsible for the end-user voltage quality, but it also has to be able to supply adequate current in all operating conditions, including a short-circuit, to ensure the electrical safety. Supplying short-circuit current with power electronics requires additional measures, and therefore, the short-circuit behavior is described and methods to overcome the high-current supply to the fault are proposed. Power electronic converters also produce common-mode (CM) and radio-frequency (RF) electromagnetic interferences (EMI), which are not present in AC distribution. Hence, their magnitudes are investigated. To enable comprehensive research on the LVDC distribution field, a research site was built into a public low-voltage distribution network. The implementation was a joint task by the LVDC research team of Lappeenranta University of Technology and a power company Suur-Savon S¨ahk¨o Oy. Now, the measurements could be conducted in an actual environment. This is important especially for the EMI studies. The main results of the work concern the short-circuit operation of the CEI and the EMI issues. The applicability of the power electronic converters to electricity distribution is demonstrated, and suggestions for future research are proposed.

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Le réseau de distribution aérien, ou plus simplement le réseau de poteaux de bois et ses câbles, est encore aujourd’hui omniprésent dans la majorité des villes du Québec. Pour plusieurs, le réseau de poteaux d’utilité publique semble appartenir à une autre époque. Pourtant, les poteaux et câbles ne sont pas près de disparaître, au contraire, ils ne cessent de se transformer. Depuis peu, de plus en plus d’équipements s’ajoutent sur le réseau: boîtiers techniques, nombre de câbles, appareillages au sommet des poteaux, antennes de communication, etc. Bien que les équipements du réseau de distribution aérien soient des éléments produits industriellement, ceux-ci intègrent rarement les services du design industriel au moment de leur conception initiale. Cette recherche étudie le système de distribution aérien sous l’angle de la « pensée design ». L’intention de cette étude est d’analyser les impacts de la présence du réseau aérien en milieux urbains et a pour objectif d’orienter les pratiques de conception de ce type d’équipements. Pour ce faire, dans une optique transdisciplinaire, diverses approches ont été sollicitées dont: l’approche systémique, l’approche paysage et les approches des partenaires des réseaux. Au moyen d’une recherche documentaire et d’observations faites sur le terrain, la recherche vise à dresser un portrait général du réseau de distribution aérien et les défis qui y sont associés. La recherche expose, dans un état des lieux, les résultats issus des questions analytiques de recherche suivantes: de quoi est composé le réseau de distribution aérien, quels sont les intervenants sur le réseau, quelles sont leurs interactions, quels sont les points de vue des différentes catégories d’acteurs en relation avec le réseau, quels sont les impacts reliés à la présence du réseau en milieux urbains et quelle a été son évolution au fil des années. Dans la perspective de l’approche design, chercher à comprendre une problématique de façon plus large permet de s’assurer que l’on répond au bon problème, que l’on considère tous les facteurs en cause visant ainsi à réduire les répercussions négatives sur les contextes de vie actuels et futurs. Les principaux constats de cette recherche démontrent que la composition du réseau de distribution, avant même de considérer les nouveaux usages et l’ajout de nouveaux équipements, présente des lacunes importantes. La gestion entre les divers partenaires du réseau de distribution pose aussi problème. L’ajout de nouveaux équipements sur le réseau, combiné aux multiples équipements apparaissant sur les voies publiques laisse entrevoir l’atteinte d’un niveau de saturation des milieux urbains. Les façons de faire hermétiques et «cristallisées» des partenaires du réseau ne collent pas avec les initiatives et aspirations générales en matière d’aménagement. En étudiant la problématique du réseau de distribution par le biais de la pensée design, l’approche design cherche à déceler, de façon proactive, les opportunités de design qui permettront de mieux gérer l’apparition et l’intégration des nouveaux équipements sur les poteaux. Cette démarche permet d’envisager des solutions qui visent à limiter les répercussions collatérales une fois en contexte et qui, du même coup, adressent des problématiques connexes. Finalement, à la lumière de l’état des lieux, cette recherche propose des critères de conception de futurs réseaux de distribution, élaborés dans l’esprit de l’approche design.

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Monitor a distribution network implies working with a huge amount of data coining from the different elements that interact in the network. This paper presents a visualization tool that simplifies the task of searching the database for useful information applicable to fault management or preventive maintenance of the network

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Energy storage is a potential alternative to conventional network reinforcementof the low voltage (LV) distribution network to ensure the grid’s infrastructure remainswithin its operating constraints. This paper presents a study on the control of such storagedevices, owned by distribution network operators. A deterministic model predictive control (MPC) controller and a stochastic receding horizon controller (SRHC) are presented, wherethe objective is to achieve the greatest peak reduction in demand, for a given storagedevice specification, taking into account the high level of uncertainty in the prediction of LV demand. The algorithms presented in this paper are compared to a standard set-pointcontroller and bench marked against a control algorithm with a perfect forecast. A specificcase study, using storage on the LV network, is presented, and the results of each algorithmare compared. A comprehensive analysis is then carried out simulating a large number of LV networks of varying numbers of households. The results show that the performance of each algorithm is dependent on the number of aggregated households. However, on a typical aggregation, the novel SRHC algorithm presented in this paper is shown to outperform each of the comparable storage control techniques.

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The Distribution Network Operators (DNOs) role is becoming more difficult as electric vehicles and electric heating penetrate the network, increasing the demand. As a result it becomes harder for the distribution networks infrastructure to remain within its operating constraints. Energy storage is a potential alternative to conventional network reinforcement such as upgrading cables and transformers. The research presented here in this paper shows that due to the volatile nature of the LV network, the control approach used for energy storage has a significant impact on performance. This paper presents and compares control methodologies for energy storage where the objective is to get the greatest possible peak demand reduction across the day from a pre-specified storage device. The results presented show the benefits and detriments of specific types of control on a storage device connected to a single phase of an LV network, using aggregated demand profiles based on real smart meter data from individual homes. The research demonstrates an important relationship between how predictable an aggregation is and the best control methodology required to achieve the objective.

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Reinforcing the Low Voltage (LV) distribution network will become essential to ensure it remains within its operating constraints as demand on the network increases. The deployment of energy storage in the distribution network provides an alternative to conventional reinforcement. This paper presents a control methodology for energy storage to reduce peak demand in a distribution network based on day-ahead demand forecasts and historical demand data. The control methodology pre-processes the forecast data prior to a planning phase to build in resilience to the inevitable errors between the forecasted and actual demand. The algorithm uses no real time adjustment so has an economical advantage over traditional storage control algorithms. Results show that peak demand on a single phase of a feeder can be reduced even when there are differences between the forecasted and the actual demand. In particular, results are presented that demonstrate when the algorithm is applied to a large number of single phase demand aggregations that it is possible to identify which of these aggregations are the most suitable candidates for the control methodology.