Title :
Semi-adaptive harmonic control for power balancing device for AC traction
Author :
Akagi, Masato ; Tsuruta, Hisashi ; Oso, Hiroshi
Author_Institution :
Power Supply Lab., Railway Tech. Res. Inst. (RTRI), Tokyo, Japan
Abstract :
“RPC: Railway Static Power Conditioner” is a proven static voltage compensator system with a pair of single phase voltage source inverters in the feeding substation to avoid a voltage fluctuation of 3-phase power grid under an single phase AC electric railway load. Several substations for Shinkansen or conventional rail substations have RPCs until now. In Hokuriku Shinkansen section, there is another RPC with a function of harmonic compensation. There, in the case of emergency, length of the extended feeding circuit would exceed 100km. In such a case, stray capacitance between catenary and the earth would cause severe harmonic resonance. Thus RPC for this section introduce a semi-adaptive harmonic control algorithm to avoid a self-resonance. RPC watches active load current continuously and if load current is smaller than threshold level, RPC stops compensating harmonics. Also if compensating current for each harmonics order is too large, RPC stops the order. Authors have already conformed an appropriate operation for this semi-adaptive harmonic control algorithm with a simulation. RPC will test its ability in winter 2013 and will in service in spring 2015.
Keywords :
adaptive control; capacitance; compensation; harmonics suppression; invertors; power grids; railway electrification; resonance; static VAr compensators; substations; traction power supplies; 3-phase power grid; AC traction; RPC; active load current; feeding circuit; feeding substation; harmonic compensation; harmonic resonance; power balancing device; rail substation; railway static power conditioner; semi-adaptive harmonic control algorithm; single phase AC electric railway load; single phase voltage source inverter; static voltage compensator system; stray capacitance; Power grids; Pulse width modulation; Reactive power; Harmonics; RPC; Traction;
Conference_Titel :
Power Electronics Conference (IPEC-Hiroshima 2014 - ECCE-ASIA), 2014 International
Conference_Location :
Hiroshima
DOI :
10.1109/IPEC.2014.6869652