Waveform control method for mitigating harmonics of inverter systems with nonlinear load

DC power systems connecting to single-phase DC/AC inverters with nonlinear loads will have their DC sources being injected with AC ripple currents containing a low-frequency component at twice the output voltage frequency of the inverter and also other current harmonics. Such a current may create instability in the DC power system, lower its efficiency, and shorten the lifetime of the DC source. This paper presents a general waveform control method that can mitigate the injection of the low-frequency ripple current by the single-phase DC/AC inverter into the DC source. It also discusses the inhibiting ability of the waveform control method on other coexisting harmonics, while the DC source delivers AC power to a nonlinear load. With the application of the waveform control, the average DC output power is supplied by the DC source, while the other harmonics pulsation power can be confined to the AC side (between the capacitors and the AC load). Theoretical analyses and experiment results are provided to explain the operation and the inhibiting ability, and to showcase the performance of the approach in tackling the harmonics. Results validate that the proposed solution can achieve significant mitigation of harmonic component at DC side with nonlinear load as well as a high quality output voltage without the need for extra large capacitive energy storage element implementation.

[1]  J. L. Stevens,et al.  The service life of large aluminum electrolytic capacitors: effects of construction and application , 2001, Conference Record of the 2001 IEEE Industry Applications Conference. 36th IAS Annual Meeting (Cat. No.01CH37248).

[2]  Frede Blaabjerg,et al.  Decoupling of Fluctuating Power in Single-Phase Systems Through a Symmetrical Half-Bridge Circuit , 2015, IEEE Transactions on Power Electronics.

[3]  Zeliang Shu,et al.  Five-level diode-clamped active power filter using voltage space vector-based indirect current and predictive harmonic control , 2014 .

[4]  P. T. Krein,et al.  Minimum Energy and Capacitance Requirements for Single-Phase Inverters and Rectifiers Using a Ripple Port , 2012, IEEE Transactions on Power Electronics.

[5]  Thomas Ellinger,et al.  Dynamic Interaction Analysis of APF Systems , 2014, IEEE Transactions on Industrial Electronics.

[6]  Wei Chen,et al.  Dynamic characteristics of boost inverter with waveform control , 2014, 2014 IEEE Applied Power Electronics Conference and Exposition - APEC 2014.

[7]  Siew-Chong Tan,et al.  Mitigation of Low-Frequency Current Ripple in Fuel-Cell Inverter Systems Through Waveform Control , 2013, IEEE Transactions on Power Electronics.

[8]  P.N. Enjeti,et al.  Development of an equivalent circuit model of a fuel cell to evaluate the effects of inverter ripple current , 2004, Nineteenth Annual IEEE Applied Power Electronics Conference and Exposition, 2004. APEC '04..