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The stable transfer method using zero power control in the CTTS system

机译:CTTS系统中使用零功率控制的稳定转移方法

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In the CTTS system, while transferring the power supply from the grid to the generator, a sudden arc arises, which causes damage to the system. The method proposed in this study reduces this damage. The power state of the generator stage is made equal to the state of the power of the grid in order to prevent the occurrence of a sudden arc. Even if the generator power state is the same with the power state of the generator, an arc can be generated due to a sudden current flow during the transfer. Therefore, the current in the generator stage is controlled to 0 (zero) when transferring, so that the generation of an electrical arc is minimized. In general, when the CTTS system is used for transferring power sources with an emergency generator, the impact from the electrical arc will be momentarily proportional to the amount of the power supplied from the generator to the load. The damage by the arc will make the life of the CTTS system shorter. In order to prevent such damage, a blocking technique using parallel capacitor is constituted. However, this causes arc generation at the time of input. Thus, in this paper, it is proposed to control the effective or ineffective power of the system to zero. To verify the validity of the proposed method, firstly the Powersim simulation was conducted, and after confirming the feasibility based on this, the actual prototype was created and implemented. Zero power control is proposed as a way to improve the stability of CTTS by significantly reducing the generation of an electrical arc. And this technique can help people working on the distributed power or the grid management.
机译:在CTTS系统中,在将电源从电网转移到发电机的同时,产生突然的弧,这导致系统损坏。本研究提出的方法可降低这种损害。发电机级的电源状态等于网格的电力的状态,以防止突然弧的发生。即使发电机电源状态与发电机的功率状态相同,即使由于在转移期间由于突出的电流流动而产生弧。因此,在传送时,发电机级中的电流被控制为0(零),从而最小化电弧的产生。通常,当CTTS系统用于用紧急发生器转移电源时,来自电弧的冲击将暂时与从发电机提供给负载的电力量成比例。弧的损坏将使CT​​TS系统的寿命更短。为了防止这种损坏,构成使用并联电容器的阻塞技术。然而,这导致输入时的电弧产生。因此,在本文中,提出将系统的有效或无效功率控制为零。为了验证所提出的方法的有效性,首先进行PowerSim仿真,并在基于此确定可行性之后,创建和实施实际原型。通过显着减少电弧的产生,提出零功率控制作为提高CTTS稳定性的方式。这种技术可以帮助人们在分布式电力或网格管理上工作。

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