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Performance improvement for cascaded multilevel inverters under battery outage condition

机译:电池断电情况下级联多电平逆变器的性能改进

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摘要

This paper is about a battery outage compensation scheme for cascaded inverters, which allows achieving good harmonic performance. The basic gate generation circuit consists of a hybrid modulation controller which combines FPWM & MSPWM for each inverter cell operation, so that the output inherits the features of switching loss reduction from FPWM, and a good harmonic performance from MSPWM. A sequential switching scheme is embedded with this hybrid modulation in-order to overcome unequal switching losses, and therefore, differential heating among the power devices. A simple base PWM circulation scheme is also to be used to get resultant hybrid PWM circulation so as to make the power dissipation balanced among the modules. The sequential switching hybrid modulation switching scheme was implemented with base PWM generation using Alternate Phase Opposition Disposition (APOD) method. The system is simulated for various frequency modulation indices and the harmonic performances are analysed. The inverters implemented using HAPOD and SHE techniques were simulated and their performances are compared under both normal condition and contingency condition with battery outage compensation.
机译:本文涉及级联逆变器的电池故障补偿方案,该方案可实现良好的谐波性能。基本的门产生电路由混合调制控制器组成,该混合调制控制器为每个逆变器单元操作组合了FPWM和MSPWM,因此输出继承了FPWM降低开关损耗的特性以及MSPWM良好的谐波性能。为了克服不相等的开关损耗,因此克服了功率器件之间的不均匀发热,在此混合调制中嵌入了顺序开关方案。一个简单的基本PWM循环方案也将用于获得混合PWM循环结果,从而使模块之间的功耗平衡。顺序开关混合调制开关方案是通过使用交替相位对立布置(APOD)方法生成基本PWM来实现的。针对各种调频指标对系统进行了仿真,并对谐波性能进行了分析。对使用HAPOD和SHE技术实现的逆变器进行了仿真,并比较了在正常条件下和应急条件下具有电池故障补偿的性能。

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