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DC-Link Capacitor Sizing Considerations for HEV/EV e-Drive Systems

机译:DC-Link电容器对HEV / EV E-Drive系统的监控考虑

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Dc-link capacitor sizing considerations are discussed for HEV/EV e-Drive systems. The capacitance value of the dc-link in HEV/EV e-Drive systems affects numerous factors. Some of the most significant are the system stability and the maximum tolerable dc-bus transient voltage with operating point change or with worst-case energy dump into the capacitor. Also requiring attention is the equivalent series resistance and inductance of the capacitor module. The former affects thermal behavior of the capacitor module and the latter affects voltage spikes occurring at every turn-off of a power semiconductor switch. In addition, these factors are dependent on other power-stage component parameters, control structures and controller gains. Also such effects and cross-couplings are operating-point dependent. This makes the dc-link capacitor sizing for HEV/EV e-Drive systems a complex task and it looks as if the task is done primarily by empirical manner with possibly more than enough safety margin. It appears accordingly that no systematic step-by-step methodology for the capacitor sizing has been discussed in the public domain. This paper attempts to present a list of the items to be considered for such a systematic dc-link capacitor sizing, and a detailed description follows for each item. The above-mentioned cross-coupling matters and the resulting trade-offs are briefly discussed. Potential issues caused by the use of emerging wide-bandgap semiconductors are mentioned as well. The target system taken as an example is an HEV e-Drive system, consisting of two electric machine drive inverters and a dc-dc converter, which share a common dc-link.
机译:对于HEV / EV电子驱动系统,讨论了DC-Link电容器规模考虑因素。 HEV / EV电子驱动系统中DC-Link的电容值影响了众多因素。其中一些最重要的是系统稳定性和最大可容忍的直流母线瞬态瞬态瞬态电压,操作点变化或用最差的能量转储到电容器中。还需要注意的是电容器模块的等效串联电阻和电感。前者影响电容器模块的热行为,后者影响功率半导体开关的每个关断处发生的电压尖峰。此外,这些因素取决于其他功率级分量参数,控制结构和控制器增益。此外,这种效果和交叉耦合是依赖的操作点。这使得HEV / EV电子驱动系统的直流链路电容器尺寸复杂任务,看起来好像任务主要通过经验方式完成,并且可能具有足够的安全保证金。因此,它在公共领域中讨论了对电容器尺寸的系统逐步逐步的方法。本文试图介绍要考虑这种系统的DC链路电容器尺寸的项目列表,并为每个项目进行详细描述。简要讨论了上述交叉耦合事项和由此产生的权衡。也提到了使用新兴宽带隙半导体引起的潜在问题。作为示例采用的目标系统是HEV电子驱动系统,由两个电机驱动器逆变器和DC-DC转换器组成,其共用常见的DC-Link。

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