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Terry Chandler Power Quality Thailand LTD PQsynergy 2011 Chiang Mai, Thailand Sept 2011WWW.powerquality.co.th1
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Monitoring Technologies Motors Generators Switchgear Cables Transformers Motors Generators Switchgear Cables Transformers
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Electrical Power Grid 3
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Transformers and Bushings
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Data-Information-Knowledge Knowledge Using the information Information (Trend graphs etc) Data (values of parameters) Sept 2011WWW.powerquality.co.th5
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Basic System Capabilities (Data) Transformer Monitoring, Control & Communications Monitor Inputs: Analogue (temperatures, fan motor current, DGA, PD) Digital (switch positions, sensor outputs) IED’s (Intelligent External Devices) Digital data Provide Outputs: Analogue Digital Data Communications Visual
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Monitoring and control of transformers Control Functions if needed Cooling Control Voltage Control including paralleling Sept 2011WWW.powerquality.co.th7
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Transmission Transformer
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FIBRE Optic TEMPERATURE SENSING Direct monitoring of temperatures occurring in winding hotspots, core and other locations where fibre optic probes are built in to transformer Sept 2011WWW.powerquality.co.th9
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Bushing Health Monitor (BHM) Alarms on: Magnitude of the imbalance current Trend of the imbalance currents Temperature dependencies Can be used for PD
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Installation Core Ground Current RFCT
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Installation CT
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Bushing sensor and Flexible CT Sept 2011WWW.powerquality.co.th13
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BUSHING HEALTH MONITOR Continuous on line monitoring of bushings real time information of bushing capacitance and power factor. early detection of possible failure.. Sept 2011WWW.powerquality.co.th14
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On-line Tap Changer (OLTC) Monitoring OLTC Counter OLTC Contact Wear OLTC Hunting Reversing Switch Exercise OLTC Motor Current Monitoring Auto Cleaning of the Reversing Switch OLTC Delta T Monitoring Sept 2011WWW.powerquality.co.th15
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ELECTRICAL PARTIAL DISCHARGE PD activity occurring in a transformer can be detected by monitoring from the bushing tap (which is commonly used in factory testing). Sept 2011WWW.powerquality.co.th16
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OEM sensor monitor functions Auto-Recharging Breather OLTC Oil Filtration System OLTC Contact Wear Sensor Inert Air or N2 Generation System Fan current (verify fans running) Contact closures Other Sept 2011WWW.powerquality.co.th17
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Typical Monitoring system Sept 2011WWW.powerquality.co.th18 To Scada if available
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Information real time Sept 2011WWW.powerquality.co.th19
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Reliability Improvement With on-line condition based data, condition based alarms when problems originate early detection and action or intervention promptly Prevent unscheduled outages. The analytical software within the monitoring system automatically identify issues requiring maintenance attention. The recording of cooling system run times OLTC operations Sept 2011WWW.powerquality.co.th20
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Realizing True Capacity of Transformer Real-Time measurement of operational parameters allows the user of the transformer to realize the true capacity based on existing conditions of weather, load etc. optimal performance can be realized Sept 2011WWW.powerquality.co.th21
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Maintenance Savings for Transformers The advanced analytics within the monitoring system filters through the condition data to automatically identify issues requiring maintenance attention. The recording of cooling system run times and OLTC operations provide useful data on the moving parts components. This provides Operations and Maintenance personnel the appropriate information to schedule condition based maintenance using information provided directly by the asset. Sept 2011WWW.powerquality.co.th22
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Information Case Studies Sept 2011WWW.powerquality.co.th23
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Case Study 1 6.6 kV Motor Motor with continuous PD monitor This motor drives a large critical compressor for a international customer. This client has been using a continuous partial discharge monitor for several years. Recently there was a fast increase in PD levels from the one of the RTDs. Sept 2011WWW.powerquality.co.th24
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Increase in Partial Discharge Sept 2011WWW.powerquality.co.th25
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Increase in PD activity it was recommended that the motor be taken out of service for inspection. An outage was scheduled for May 2009. Once the motor was placed back into service, all PD levels dropped down to acceptable levels and have remained at those levels. Sept 2011WWW.powerquality.co.th26
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The defect was easily discovered and field repairs were made. Sept 2011WWW.powerquality.co.th27
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By proving this early warning, one can schedule a planned outage. Taking a planned outage, is far more cost effective than having an unexpected Sept 2011WWW.powerquality.co.th28
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Economic return (knowledge) Prevented catastrophic failure By proving this early warning, one can schedule a planned outage. Taking a planned outage, is far more cost effective than having an unexpected Estimated Cost Savings: $91,000 Sept 2011WWW.powerquality.co.th29
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Economic returns Reliability improvement Realizing true capacity of transformer Maintenance savings Documenting life of transformer Extend life of transformers Sept 2011WWW.powerquality.co.th30
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Case 2 230 kV Bushing Data Sept 2011WWW.powerquality.co.th31 Scheduled maintainance
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Cost saving (Knowledge) Estimated Cost Savings: Several Million Dollars due to cost of a new transformer and lost production. Scheduled shut down and replacement of Bushing vs unexpected failure and damage. Sept 2011WWW.powerquality.co.th32
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Summary Large transformer assets monitoring system provides near real time data, alarming and historical data on all transformer parameters. Eliminates the need for manual measurements. Alert the owner to do preventative repairs before a major failure. Lower the cost of transformer inspections and regular servicing. Sept 2011WWW.powerquality.co.th33
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Thank You Contact for more information Terry Chandler Terryc@powerquality.org Sept 2011WWW.powerquality.co.th34
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