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Static Series and Shunt-series PE Voltage-quality Controllers

Abstract

As presented in the Chap. 7 static shunt power electronics (PE) voltage-quality controllers protect the utility electrical system from the unfavorable impact of customer loads. Shunt controllers, as shown in Chap. 6, are recommended mainly for mitigation of the causes of disturbances, and not their effects in distanced nodes of a power-electronics system. In the case when reduction of disturbances effects is required, which leads to protection of sensitive loads from the deterioration in the supply-side voltage, we should rather apply dual arrangements – static series voltage PE quality controllers. Such controllers, operating as a synchronous voltage source, are included in the feeder in series between the supply voltage and the load, which is illustrated in Fig. 8.1 [1]. Series voltage controllers through inserting a voltage uC of a required waveshape maintain the required quality in the load-side voltage uL in case of various disturbances in terminal voltage uT . The type and allowable value and duration of mitigated disturbances in voltage uT , they depend on arrangement of the series voltage controller, its control system and capacitance of possible additional energy storage. In a distribution system we must maintain the energy balance, in which the following are taken into account: disturbance duration and instantaneous active powers pT , pC , pL , absorbed from the power source, energy storage and by the load.

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Details

Category:
Monographic publication
Type:
rozdział, artykuł w książce - dziele zbiorowym /podręczniku w języku o zasięgu międzynarodowym
Language:
English
Publication year:
2007
Bibliographic description:
Strzelecki R., Wojciechowski D., Benysek G.: Static Series and Shunt-series PE Voltage-quality Controllers// Power Quality. Mitigation Technologies in a Distributed Environment/ : , , s.205-230
DOI:
Digital Object Identifier (open in new tab) 10.1007/978-1-84628-772-5_8
Sources of funding:
  • Free publication
Verified by:
Gdańsk University of Technology

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