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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Reducing Voltage Rating and Cost of Vehicle Power Systems With a New Transient Voltage Suppression Technology
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Reducing Voltage Rating and Cost of Vehicle Power Systems With a New Transient Voltage Suppression Technology

机译:新型瞬态电压抑制技术可降低汽车电源系统的额定电压和成本

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摘要

Power electronics plays a critical role in modern vehicle systems. The voltage rating of vehicle power electronics is predominantly determined by the transient immunity requirement, which considerably exceeds the maximum operating voltages of the 14- and 28-V vehicle power systems, and imposes a large cost penalty. In contrast, the emerging 42-V systems require a much improved bus voltage regulation to maintain system affordability. In this paper, we discuss the feasibility of reducing the dc breakdown voltage requirement and subsequently the cost of various vehicle power systems by employing a new class of semiconductor transient voltage suppressors termed MOSTVS. The MOSTVS, combining power MOSFET and polysilicon thin-film technologies, provides a much more accurately controlled clamping voltage than the conventional Zener diodes and MOVs over a wide range of current and temperature. The MOSTVS can be used in the conventional alternator/rectifier/regulator configuration or the more advanced drivetrain motor/generator configuration. It is estimated that the cost of power semiconductor transistors and filter capacitors can be reduced by up to 70% if the voltage rating of the 14-V automotive system is reduced from 50 to 30 V. Similar benefits can be achieved in the 28- and 42-V systems as well.
机译:电力电子在现代车辆系统中起着至关重要的作用。车辆电力电子设备的额定电压主要由瞬态抗扰度要求决定,该要求大大超过了14 V和28 V车辆电力系统的最大工作电压,并带来较大的成本损失。相反,新兴的42 V系统需要大大改善的总线电压调节率才能维持系统的承受能力。在本文中,我们讨论了通过使用称为MOSTVS的新型半导体瞬态电压抑制器来降低直流击穿电压要求的可行性以及随后降低各种车辆电源系统的成本的可行性。 MOSTVS结合了功率MOSFET和多晶硅薄膜技术,在很大的电流和温度范围内提供了比传统的齐纳二极管和MOV更精确的钳位电压控制。 MOSTVS可用于常规的交流发电机/整流器/调节器配置或更高级的传动系统电动机/发电机配置。据估计,如果将14V汽车系统的额定电压从50V降低到30V,则功率半导体晶体管和滤波电容器的成本最多可降低70%。在28V和25V的汽车中,可以获得类似的好处。 42-V系统也是如此。

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