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CAD/CAM/CNC三位一体合成系统的研究 被引量:2
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作者 王宏 《实验室研究与探索》 CAS 2007年第2期54-56,共3页
论述了在计算机及其串行通信速度获得突破性发展后,基于我国现行国民经济基础和环境,自主创新地开发集设计、辅助制造、实时控制三位一体,即CAD/CAM/CNC合成系统的可行性、可能性和必要性,并初步提出了设计思想及一些有关概念。
关键词 USB2.0 IEEE1394 系统总控制模块 分立模块 CAD/CAM/CNC三位一体
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A multi-modular shunt active power filter system and its novel fault-tolerant strategy based on split-phase control and real-time bus communication
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作者 Qun-wei XU Jin-xiang ZHAN +1 位作者 Long XIAO Guo-zhu CHEN 《Frontiers of Information Technology & Electronic Engineering》 SCIE EI CSCD 2018年第9期1166-1179,共14页
We first present a new multi-modular shunt active power filter system suitable for large-capacity compensation. Each module in the system has the same circuit topology, system functionality, and controller design, to ... We first present a new multi-modular shunt active power filter system suitable for large-capacity compensation. Each module in the system has the same circuit topology, system functionality, and controller design, to achieve coordination control among the modules. The module's reference signals are obtained by multiplying the total reference signal by the respective distribution coefficient. Next, a novel fault-tolerant approach is proposed based on split-phase control in the a-b-c frame and real-time bus communication. When a phase fault occurs, instead of halting the whole module, the proposed strategy isolates only the faulted bridge arm, and then recalculates the distribution coefficients and transfers the compensation capacity to the same phases of the other normal modules, resulting in a continuous operation of the faulted module and optimization of the remaining usable power devices. Through steady-state analysis of the post-fault circuit, the system stability and control reliability are proven to be high enough to guarantee its engineering application value. Finally, a prototype is established and experimental results show the validity and feasibility of the proposed multi-modular system and its fault-tolerant control strategy. 展开更多
关键词 Shunt active power filter Fault-tolerant topology Split-phase control Bus communication
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