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Bi-directional DC Circuit Protection Technology for Photovoltaic Applications

机译:光伏应用的双向直流电路保护技术

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The demand and challenge for DC circuit protection products continue to grow as renewable energy installations further expand with increasing system voltages such as photovoltaic systems. This drives the need for cost effective and compact DC circuit protection devices. Most of the products on the market for DC circuit protection and isolation disconnect are based on traditional AC products with poles connected in series to meet the DC interruption performance requirement for photovoltaic systems. A few of them do utilize permanent magnets design to achieve effective DC interruption performance required by DC electrical systems. However, they typically have only unidirectional switching capability. In this paper, a DC arc interruption technology has been developed to achieve bidirectional interruption capability at 600VDC per pole of a molded case circuit breaker. Unique arc chamber structure was implemented employing permanent magnets to allow effective arc motion and arc splitting with minimum change of existing AC switching devices. Arc motion gas dynamics during switching operation was investigated by both numerical simulation and experimentation. Tests were carried out to verify the feasibility of the technology. Test results show that this technology enables the DC single-pole molded case circuit breaker to not only be able to interrupt over current fault, but also be able to switch low level current such as a few Amperes.
机译:随着可再生能源装置随着光伏系统等系统电压的增加而进一步扩大,对直流电路保护产品的需求和挑战继续增长。这推动了对具有成本效益的紧凑型直流电路保护设备的需求。市场上用于直流电路保护和隔离断开的大多数产品都是基于传统的交流产品,其极点串联在一起,可以满足光伏系统的直流中断性能要求。他们中的一些人确实利用永磁体设计来实现直流电气系统所需的有效直流中断性能。但是,它们通常仅具有单向切换功能。在本文中,已经开发出一种直流电弧中断技术,以实现塑壳断路器每极600VDC的双向中断能力。采用永磁体实现了独特的电弧室结构,以最小的现有AC开关设备实现有效的电弧运动和电弧分裂。通过数值模拟和实验研究了开关操作期间的电弧运动气体动力学。进行了测试以验证该技术的可行性。测试结果表明,该技术使直流单极塑壳断路器不仅能够中断过电流故障,而且能够切换几安培等低电平电流。

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