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A THEORY OF CONVERTERS AND TRANSMISSION SYSTEMS
Converter Performance under Special Conditions
Converters with Reactance on the Alternating Current Side
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a.c. network according to Eq according to Fig alternating current alternating voltage anode arc-back arrester bipolar breaker busbar bypass path cable calculation capacitances capacitor circuit-breaker commutation group components conductor connection constant converter station converter transformer current controller curve d.c. reactor d.c. side d.c. transmission link damping circuits delay angle determined diagram direct current direct voltage distance effect electrode equations example factor field strength Figure filter flashover ground fault ground wire high-voltage homopolar impedance impulse increase inductance installation insulation interference inverter limit load losses means mercury-arc valves network frequency normal obtain occur operation overhead lines overlap angle overvoltages phase polarity pole possible quantity reactance reactive power rectifier reduced reference value resistance resistor Section short-circuit current shown in Fig shows source voltage spark gaps switching synchronous condenser temperature thyristor elements thyristor valves transient valve bridge valve hall valve voltage voltage divider voltage drop zero