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Improved Dead-Beat Predictive DPC Strategy of Grid-Connected DC–AC Converters With Switching Loss Minimization and Delay Compensations

机译:具有开关损耗最小和延迟补偿的并网DC-AC转换器的改进的无故障预测DPC策略

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摘要

This paper presents an improved dead-beat predictive direct power control (DPC) strategy for grid-connected dc–ac converters. In order to minimize switching losses and to alleviate power oscillations, a new voltage vectors' sequence is proposed for the predictive DPC strategy based on the angular location of the required converter voltage vector rather than the grid voltage vector. Thus, low-order harmonics in ac currents and periodic oscillations in the reactive power are removed with the feature of minimum switching losses kept. Further, in order to reduce steady-state errors of active and reactive powers, compensation methods are proposed in practical systems for both power errors and angular shifts caused by sampling delays. Experimental results on a 1.5 kW grid-connected dc–ac converter are provided to validate the feasibility of the proposed voltage vectors' sequence and compensation methods for the predictive DPC strategy.
机译:本文提出了一种改进的并网直流-交流转换器的无差拍预测直接功率控制(DPC)策略。为了最小化开关损耗并减轻功率振荡,基于所需转换器电压矢量而不是电网电压矢量的角度位置,为预测DPC策略提出了新的电压矢量序列。因此,交流电流的低次谐波和无功功率的周期性振荡得以消除,同时保持了最小的开关损耗。此外,为了减小有功和无功的稳态误差,在实际系统中提出了针对由采样延迟引起的功率误差和角度偏移的补偿方法。提供了一个1.5 kW并网dc-ac转换器的实验结果,以验证所提出的电压矢量序列和预测DPC策略补偿方法的可行性。

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