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首页> 外文期刊>Power Electronics, IEEE Transactions on >Transient Response Improvement at Startup of a Three-Phase AC/DC Converter for a DC Distribution System in Commercial Facilities
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Transient Response Improvement at Startup of a Three-Phase AC/DC Converter for a DC Distribution System in Commercial Facilities

机译:用于商业设施的直流配电系统的三相AC / DC转换器启动时的瞬态响应改善

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摘要

In this paper, a soft-start method for improvement of the transient response during the initial startup of power converters in building applications is proposed. Most dc loads have sensitive electrical characteristics regarding the input voltage. In such systems, the power converter is operated after connecting with dc loads to minimize the overshoot of the control voltage that may occur during connection to the loads. But whenever the power converter is started, the parameters in the circuit can differ, since the power converter is connected with various load types at each startup. This is disadvantageous for PI controller design for power converters. In order to solve this problem, a novel voltage control method using sliding-mode control theory is proposed. The advantage of the proposed voltage controller is that it is able to minimize an overshoot of the control voltage at the startup of the converter in terms of the types of loads or the magnitude variation of loads because a sliding mode controller has the robust characteristic of a variation in the parameters and load. The characteristics of three types of voltage controllers were compared through simulations and experiments. Despite the variations of the system parameters, the proposed voltage controller has fast response in the steady-state and robustness characteristics in the transient state. In addition, the proposed controller fundamentally minimizes the overshoot of the control voltage. The proposed controller was applied to a three-phase ac/dc converter, and the controller performance was verified.
机译:本文提出了一种软启动方法,用于改善建筑应用中电源转换器初次启动时的瞬态响应。大多数直流负载在输入电压方面具有敏感的电气特性。在这样的系统中,功率转换器在与直流负载连接之后运行,以最大程度地减小在连接至负载期间可能发生的控制电压过冲。但是,每当功率转换器启动时,电路中的参数就可能不同,因为功率转换器在每次启动时都会连接各种负载类型。这对于用于功率转换器的PI控制器设计是不利的。为了解决这个问题,提出了一种新的利用滑模控制理论的电压控制方法。所提出的电压控制器的优点在于,由于负载的类型或负载的大小变化,它能够使转换器启动时控制电压的过冲最小化,因为滑模控制器具有鲁棒的特性。参数和负载的变化。通过仿真和实验比较了三种电压控制器的特性。尽管系统参数有所变化,但所提出的电压控制器在稳态下具有快速响应,在瞬态下具有鲁棒性。另外,所提出的控制器从根本上最小化了控制电压的过冲。将该控制器应用于三相交流/直流变换器,并验证了该控制器的性能。

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