【精品】GIS 毕业设计 文献翻译 中英文 地理信息系统网络应用电力系统克里特岛.doc
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1、【精品】GIS 毕业设计 文献翻译 中英文 地理信息系统网络应用电力系统克里特岛附录一:英文原文A GIS WEB APPLICATION FOR POWER SYSTEM OF CRETEJ. Syllignakis, C. Adamakis, T.M. PapazoglouThe Technological Educational Institute of Crete (TEIC), GreeceABSTRACTGeographical Information System (GIS) applications are very helpful tools for displaying a
2、nd analyzing informationfor several technological fields. The research group of Electrical Power System Lab (EPSL) of TEIC is developing aGIS software application for displaying the operational conditions of the power system of Crete, presenting alsocritical information and statistical data for syst
3、ems characteristics. This tool is intended to help training of engineersin the Electrical Department of TEIC to simulate and visualize power system operation and characteristics. Besides,this tool is very helpful for a power system engineer in observing the whole system operations and systems data.
4、Alldata used are derived from a database developed by EPSL. Digitalized maps of Crete Island use this database anddisplay them optionally according to users demand or choice. So, an authorized user can decide which data will bedisplayed on the map, and with a simple mouse click on a selected element
5、 of the map he can b informed about its characteristics. Furthermore, this application is being uploaded on web. This means that this application runson aserver of EPSL, which can serve distant users after authorization procedure. That distance user could be a trainee inhis desk, or an engineer, or
6、a researcher in the lab. One of the services that application provides is the load flow calculation on a specific part of the system, or for a specific scenario of systems operation.Key-Words:- GIS applications, Power Systems observation, power systems web-applications1. INTRODUCTIONCretes electrica
7、l power system is a large autonomous system with large wind power penetration. The customers power & energy demand is increasing with high rates. The operation of the whole system is in charge of the Greek PPC (public power corporation)control center, located in Iraklion, where a SCADA system ha
8、s been installed. In terms of integration of dispersed generation new methods and computer applications are adopted toward adaptation of the critical information of systems operational conditions.Mapping and Geographic Information Systems (GIS)are key to a utilitys business. These software applicati
9、ons store and map a vast amount of information about the utilitys electric system and other outside plants. People and applications across theorganization typically require information from the GIS.Thebenefits of adaptation of a GIS for a power system are many. Descriptive presentation of data (grap
10、hics,maps, tables etc) and presentation of data in real space are offered. They offer, also,convenience concerning data processing since, as wellas to examine them in different layers. It analyzes and presents information related to spatial places. It can combine elements data from digital database,
11、 GPS for concerning the specific definition of places,sampling and distant measurements. The relation between the data basis and the maps give the chance to the user to interact with the system of an interactivecommunication between the user and the system.Moreover many data basis can be connected a
12、ndcombined improving the flexibility of the system.Using specific tools of software design (like map objects) we can display the results of a load flow test on the digital map of Crete.Its possible to use GIS to define the number of people as well as forecast of load demand. Further more if we know
13、the density (people, space) we can rate the placesper load demand.The amount of data can be presented on maps for a quick estimation of the network-system operational condition.The GIS can observe external factors such as weather conditions. For example if we know the temperature of an area, were ab
14、le to predict the load demand there,for the next hours.GIS is a helpful tool for new types of energymanagement.2. SYSTEM MODELLING TECHNICAL INFORMATION2.1 Power ProductionThe power system of the island of Crete is the largest autonomous power system in Greece with the highest rate of increase natio
15、n-wide in energy and power demand. The conventional generation system consists of three major power plants one in Linoperamata, one in Chania and one in Atherinolakos (the latest). The first two power plants are located near the major load points of the island. There are 20 thermal, oil-fired genera
16、ting units with a total installed capacity of about 742MW. The percentage of the participation of each generator type in the total electrical power production and the annual fuel consumption are depicted in figures1 and 2(These two figures correspond to the system in 2001, before atherinolakos insta
17、llation. The power system comprises the following power stations: Six steam turbines in Linoperamata Four diesel engines in Linoperamata Four gas turbines in Linoperamata & five gas turbines in Chania. One combined cycle in Chania of 133.4 MW (2gas turbines and 1 steam turbine) Two diesel engine
18、s in Atherinolakos 2.2 Load demandThe base load is mainly supplied by the steam and diesel units. The gas turbines normally supply the daily peak load. Until 1988 the annual peak load demand always occurred in winter, from then on it always appears in summer evenings. Figure 3 shows the increase of
19、energy demand and peak load since 1964.One characteristic of the load profile is the large variations (low night valleys high evening peaks).Gas turbines have a high operating cost that increases significantly the average cost of electricity being supplied. 2.3 Transmission systemThe transmission ne
20、twork (figure 4) consists mainly of 150 kV lines. There are only 2 lines of 66kV from Linop33 (production sub) to 1Irak31 (substation). The distribution network consists of 20 kV (21 kV) and 15kV (15.75 kV) lines. The generation system and the transmission network are supervised by a control centerl
21、ocated in one of the substations in Iraklio (2IRAK), using a SCADA system. 2.4 Wind ParksAbout 15 Wind Parks(WPs) have been installed in Crete since 1995 of total capacity of up to 134.7 MW and there are plans for more WPs in the next years. The peak wind penetration was up to 41.2%. Most of the win
22、d parks have been installed at the eastern part of the island (Sitia) that presents the most favourable wind conditions. As a result, in case of faults on some particular lines, the majority of the wind parks will be disconnected.Furthermore, the protections of the WPs might be activated in case of
23、frequency variations, decreasing additionally the dynamic stability of the system.Extensive transient analysis studies have therefore been conducted in order to assess the dynamic behaviour of the system under various disturbances and with different combinations of the generating units.2.5 Technical
24、 constraintsThe start up preparation time of a generator depends on its type. The gas turbines require 6-12 minutes for preparation. The steam turbines require 1-2 hours in hot state, and 8 or more hours for the cold state. The diesels require about 20 minutes. In addition, the increase rate of powe
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