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Pulse current source with high dynamic

机译:具有高动态的脉冲电流源

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The paper presents a new topology of the pulse current source required in contemporary electrochemical processes (e. g. pulse plating). The main design challenge is generation of pulses with current slopes (di/dt) as high as possible. A buck converter is the most appropriate topology for generation of a constant current, but it doesn't fulfill the demands for a dynamic operation. The slope of the pulsed load current can be essentially improved if two or more converters are connected in series or parallel [2]. A complex control algorithm and interdependence between the slope of the pulse current and its ripple in the steady state are the main disadvantages of a such connection. These two drawbacks are bypassed with a proposed topology of the pulse current source (Fig. 2). The source consists of the input buck converter and the bridge inverter with a current fed transformer. The function of the bridge inverter differs from the usual bridge operation. The operating mode, in which the energy is carried to the load, is called transfer mode. The idle mode is the other possible mode in which all transistors in the bridge are turned on at the same time and the load current is zero. The load current is controlled indirectly by the DC input current (4). Since the main inductor is placed into a DC link, the slope of the output current is limited only by stray inductances of the transformer and load. Stray inductances slow down commutation process, which is reflected in overvoltages on the bridge transistors. In order to avoid the destruction of those transistors, a clamping diode DZ is added in the input circuit (Fig. 4). Additional advantages of the proposed topology are isolated output stage and modularity. Experimental results (Figs. 7, 8, 9 and 10), obtained from a laboratory pulse current source confirm an outstanding dynamic performance.
机译:本文提出了当代电化学过程所需的脉冲电流源的新拓扑(例如脉冲电镀)。主要的设计挑战是产生具有电流斜坡(DI / DT)的脉冲尽可能高的脉冲。降压转换器是用于生成恒定电流的最合适的拓扑,但它并不能满足动态操作的需求。如果两个或更多个转换器串联或并联连接,则可以基本上改善脉冲负载电流的斜率[2]。在稳定状态下脉冲电流的斜率与其纹波之间的复杂控制算法和相互依赖性是这种连接的主要缺点。使用脉冲电流源的提出拓扑(图2)绕过这两个缺点。源包括输入降压转换器和带电流馈电变压器的桥式变频器。桥式逆变器的功能与通常的桥接操作不同。操作模式,其中能量被带到负载,称为传输模式。空闲模式是其他可能的模式,其中桥中的所有晶体管同时导通,并且负载电流为零。通过DC输入电流(4)间接控制负载电流。由于将主电感器放入到DC链路中,因此通过变压器的杂散电感和负载仅限输出电流的斜率。杂散电感减慢换向过程,其在桥晶体管上的过电压中反射。为了避免这些晶体管的破坏,在输入电路中添加钳位二极管DZ(图4)。所提出的拓扑的额外优点是隔离输出阶段和模块化。实验结果(图7,8,9和10),从实验室脉冲电流源获得了突出的动态性能。

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