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Adaptive optimal pulse-width modulation for the line-side converter of electric locomotives

机译:电力机车线路侧变流器的自适应最优脉宽调制

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Two methods of generating synchronous online optimal PWM sequences for the line-side converter of electrical locomotives are described. The properties of the feeding supply line render the system oscillatory at multiple resonance frequencies, which are time-variable functions of the railway track topography and of the respective locations of traction vehicles. The prevailing topographic conditions define a time-variable virtual model of the overhead line, the harmonic energy of which is the optimum criterion to be minimized. The 176 switching instants of a nine-level PWM converter voltage are optimized using an online algorithm. The necessary computations are performed in the time intervals between two commutations. The performance is illustrated by measurements obtained from a real-time multiprocessing model of an extended railway track topography, including substations and locomotives. The developed hardware structure is designed for the implementation in a railway traction vehicle.
机译:描述了两种为电力机车的线路侧转换器生成同步在线最优PWM序列的方法。馈电线的特性使系统在多个共振频率下振荡,这是铁轨地形和牵引车各个位置的时变函数。当时的地形条件定义了架空线的时变虚拟模型,其谐波能量是要最小化的最佳标准。使用在线算法优化了九电平PWM转换器电压的176个开关瞬间。在两个换向之间的时间间隔中执行必要的计算。通过从扩展的铁路轨道地形(包括变电站和机车)的实时多处理模型获得的测量结果来说明性能。所开发的硬件结构是为在铁路牵引车中实施而设计的。

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