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Unique Control System Design For Pipeline Compression Applications
Simple, parallel load balancing is implemented by having each load-sharing controller calculate a load variable (D) that is a linear function of its compressor's deviation from surge, while the master controller calculates the average of these compressor loads. Each load-sharing controller then...
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Published in: | Pipeline & gas journal 2001-06, Vol.228 (6), p.14-14 |
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container_title | Pipeline & gas journal |
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creator | Staroselsky, Naum Mirsky, Saul Shcharansky, Leonid Mints, Lev Budzulyak, Bogdan V Remizov, Valery V Sedykh, Alexander D Shaykhutdinov, Alexander Z Boyko, Anatoliy M |
description | Simple, parallel load balancing is implemented by having each load-sharing controller calculate a load variable (D) that is a linear function of its compressor's deviation from surge, while the master controller calculates the average of these compressor loads. Each load-sharing controller then calculates a PID load-balancing response to the deviation of its load from the average and adds it to the common, speed set point calculated by the primary capacity-control response. |
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subjects | Algorithms Compressors Computer software Computer workstations Condition monitoring Contracts Control algorithms Control equipment industry Controllers Efficiency Equipment and supplies Gas turbines Gas utilities Maintenance and repair Natural gas transportation Pipe lines Pipelines Process control Recycling Retrofitting Shutdowns Speed limits Turbines Turbomachinery Valves Work stations |
title | Unique Control System Design For Pipeline Compression Applications |
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