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首页> 外文期刊>IEEE Transactions on Control Systems Technology >Improved Direct Power Control for Rectifier Based on Fuzzy Sliding Mode
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Improved Direct Power Control for Rectifier Based on Fuzzy Sliding Mode

机译:基于模糊滑模的改进型整流器直接功率控制

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摘要

An improved direct power control (DPC) is proposed for a three-phase voltage-source rectifier based on fuzzy sliding mode. It introduces the sliding mode controller (SMC) to enhance the disturbance rejection ability of the outer dc voltage loop. To ensure the stability of SMC, a fuzzy-based switching state controller is developed for the inner power loop, with which the switching states can be provided directly at the fixed time interval. This can contribute to the digitalization of controller and eliminate the drawbacks of the predefined switching table and the variable frequency that exists in the classical DPC. The effectiveness of the proposed DPC is verified by the simulation and experiment. Compared with the classical DPC, the current total harmonic distortion in the steady state is reduced by nearly half, and the transient setting time is shortened by at least 23%. The results indicate better performance of the proposed DPC in both the steady and transient states.
机译:针对基于模糊滑模的三相电压源整流器,提出了一种改进的直接功率控制(DPC)。它引入了滑模控制器(SMC),以增强外部直流电压环路的抗干扰能力。为了确保SMC的稳定性,针对内部电源回路开发了基于模糊的开关状态控制器,使用该开关可以在固定的时间间隔直接提供开关状态。这可以有助于控制器的数字化,并消除预定义的开关表和经典DPC中存在的可变频率的缺点。仿真和实验验证了所提出的DPC的有效性。与传统的DPC相比,当前稳态下的总谐波失真降低了近一半,瞬态设置时间缩短了至少23%。结果表明,所提出的DPC在稳态和瞬态下均具有更好的性能。

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