APPLICATIONS OF GPS IN POWER ENGINEERING.ppt
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1、APPLICATIONS OF GPS IN POWER ENGINEERING,What is GPS?,GPS or Global Positioning Systems is a highly sophisticated navigation system developed by the United States Department of Defense. This system utilizes satellite technology with receivers and high accuracy clocks to determine the position of an
2、object.,The Global Positioning System,A constellation of 24 high-altitude satellites,GPS is,A constellation of satellites, which orbit the earth twice a day, transmitting precise time and position (Latitude, Longitude and Altitude) Information. A complete system of 21 satellites and 3 spares.,GPS at
3、 Work,Navigation - Where do I want to go? Location - Where am I? 3. Tracking - Monitoring something as it moves 4. Mapping - Where is everything else? 5. Timing - When will it happen?,Why do we need GPS?,Safe Travel Traffic Control Resource Management Defense Mapping Utility Management Property Loca
4、tion Construction Layout,4 birds (as we say) for 3-D fix,Global Positioning Systems (GPS) Applicationsin Power Systems,Power companies and utilities have fundamental requirements for time and frequency to enable efficient power transmission and distribution. Repeated power blackouts have demonstrate
5、d to power companies the need for improved time synchronization throughout the power grid. Analyses of blackouts have led many companies to place GPS-based time synchronization devices in power plants and substations,Why GPS For power Eng,It furnishes a common-access timing pulsewhich is accurate to
6、 within 1 microsecond at anylocation on earth.A 1-microsecond error translates into 0.021for a 60 Hz system and 0.018 for a 50 Hz system and is certainly more accurate than any other application,GPS time synchronization,By synchronizing the sampling processes for different signals which may be hundr
7、eds of kilometers apart it is possible to put their phasors in the same phasor diagram,GPS time synchronization,Absolute Time Reference Across the Power System,Synchronized phasor measurements (SPM) have become a practical proposition. As such, their potential use in power system applications has no
8、t yet been fully realized by many of power system engineers.,Phasor Measurement Units PMUs,Phasor Measurement Units (PMU) or SYNCHROPHASORS,DAWN OF THE GRID SYNCHRONIZATION,Phasor Measurement Units )PMU),They are devices which use synchronization signals from the global positioning system (GPS) sate
9、llites and provide the phasor voltages and currents measured at a given substation.,Phasor Measurement Units PMUs,Secondary sides of the 3 P.T. or C.T.,Corresponding Voltage or Current phasors,input,output,PMU,Phasor Measurement Units PMUs,Phasor Monitoring Unit (PMU) Hardware Block Diagram:,Samplin
10、g at Fixed Time Intervals Using an Absolute Time Reference,The GPS receiver provides the 1 pulse-per-second (pps) signal, and a time tag, which consists of the year, day, hour, minute, and second. The time could be the local time, or the UTC (Universal Time Coordinated).The l-pps signal is usually d
11、ivided by a phase-locked oscillator into the required number of pulses per second for sampling of the analog signals. In most systems being used at present, this is 12 times per cycle of the fundamental frequency. The analog signals are derived from the voltage and current transformer secondarys.,Th
12、e Birth of the PMUs,Computer Relaying developments in 1960-70s.,ABB,Now,RES 521,SEL-421,ABB,Phasor Measurement Units,Phasor Measurement Units PMUs,Data Concentrator (Central Data Collection),ABB,Different applications of PMUs in power system,Adaptive relaying Instability prediction State estimation
13、Improved control Fault recording Disturbance recording Transmission and generation modeling verification Wide area Protection Fault location,Applications of PMU in power System,1-Adaptive relaying,Adaptive relaying is a protection philosophy which permits and seeks to make adjustments in various pro
14、tection functions in order to make them more tuned to prevailing power system conditions,Applications of PMU in power System,2-Instability prediction, The instability prediction can be used to adapt load shedding and/or out of step relays., We can actually monitor the progress of the transient in re
15、al time, thanks to the technique of synchronized phasor measurements.,Applications of PMU in power System, The state estimator uses various measurements received from different substations, and, through an iterative nonlinear estimation procedure, calculates the power system state.,3-State estimatio
16、n, By maintaining a continuous stream of phasor data from the substations to the control center, a state vector that can follow the system dynamics can be constructed., For the first time in history, synchronized phasor measurements have made possible the direct observation of system oscillations fo
17、llowing system disturbances,Applications of PMU in power System, Power system control elements use local feedback to achieve the control objective.,4-Improved control,The PMU was necessary to capture data during the staged testing and accurately display this data and provide comparisons to the syste
18、m model.,The shown figure shows a typical example of one of the output plots from the PMU data,Applications of PMU in power System, They can capture and display actual 60/50 Hz wave form and magnitude data on individual channels during power system fault conditions.,5-Fault Recording,Applications of
19、 PMU in power System, Loss of generation, loss of load, or loss of major transmission lines may lead to a power system disturbance, possibly affecting customers and power system operations.,6-Disturbance Recording,Applications of PMU in power System,These figures are examples of long-term data used
20、to analyze the effects of power system disturbances on critical transmission system buses.,Disturbance Recording,Applications of PMU in power System, Computerized power system modeling and studies are now the normal and accepted ways of ensuring that power system parameters have been reviewed before
21、 large capital expenditures on major system changes.,7-Transmission and Generation Modeling Verification, In years past, actual verification of computer models via field tests would have been either impractical or even impossible, The PMU class of monitoring equipment can now provide the field verif
22、ication required,Applications of PMU in power System, The shown figure compares a remote substation 500 kV bus voltage captured by the PMU to the stability program results,7-Transmission and Generation Modeling Verification,Applications of PMU in power System,The introduction of the Phasor Measureme
23、nt Unit (PMU) has greatly improved the observability of the power system dynamics. Based on PMUs, different kinds of wide area protection, emergency control and optimization systems can be designed,8-Wide Area protection,Applications of PMU in power System,A fault location algorithm based on synchro
24、nized sampling. A time domain model of a transmission line is used as a basis for the algorithm development. Samples of voltages and currents at the ends of a transmission line are taken simultaneously (synchronized) and used to calculate fault location.,9-Fault Location,Applications of PMU in power
25、 System,The Phasor measurement units are installed at both ends of the transmission line. The three phase voltages and three phase currents are measured by PMUs located at both ends of line simultaneously,Fault Location,Applications of PMU in power System,SPM-based applications in power systems,off-
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