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Cost-effective practical developments of high-performance and multi-functional UPS with new system configurations and their specific control implementations

机译:具有新系统配置的高性能和多功能UPS的经济实际开发及其特定控制实现

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The state-of-the art UPS which is composed of power conversion and inversion conditioning and processing configuration incorporating simple half-bridge active AC/DC converter and half-bridge PWM inverter circuits with no electrical isolation power stage has attracted special interest in computer and telecommunication systems. This UPS topology is highly cost-effective and suitable for power conversion efficiency improvement and volumetric size and weight reduction. However, this attractive UPS topology has a significant disadvantage that storage batteries have to be connected to the high DC link bus. In order to provide an acceptable DC voltage link with storage batteries, an improved type of application-specific UPS topologies have been proposed and investigated from a practical point of view. This paper presents a nonelectrical isolated prototype of UPS circuit topologies incorporating converter circuits for battery bank interface and their related specific multi-functional control strategies, which are composed of cost-effective IGBT modules. The operating principles of power conversion topologies and control strategies are described. The experimental results of a unique and high-performance UPS topology with battery bank interface circuit are illustrated for 3 kVA UPS application and compared with the latest conventional UPS with storage batteries connected to the high DC voltage bus.
机译:由电力转换和反转调节和处理配置组成的最先进的UPS,该配置包括简单的半桥有源AC / DC转换器和没有电隔离功率级的半桥PWM逆变器电路引起了计算机和计算机的特殊兴趣电信系统。该UPS拓扑具有高度成本效益,适用于功率转换效率提高和体积尺寸和减重。然而,这种吸引力的UPS拓扑具有重要的缺点,即蓄电池必须连接到高直流链路总线。为了提供具有蓄电池的可接受的直流电压连接,已经提出了一种改进的应用专用UPS拓扑,并从实际的角度调查。本文提出了一种非电路电路拓扑的非电子隔离原型,包括电池组接口的转换电路及其相关的特定多功能控制策略,由经济高效的IGBT模块组成。描述了电力转换拓扑和控制策略的操作原理。具有电池组接口电路的独特和高性能UPS拓扑的实验结果,用于3 kVA UPS应用,并与最新的传统UPS与连接到高直流电压总线的蓄电池进行比较。

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