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614型电子管交流稳压电源的改造
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作者 沈广鸿 《山东矿业学院学报》 CAS 1999年第2期50-52,共3页
本文针对614型电子管交流稳压电源的大量损坏和报废情况,叙述了一种用集成运放LM324等元件构成的交流稳压电路替换其原有的电子管交流稳压电路的方法。该交流稳压控制电路体积和功耗大大缩小,价格低廉,提高了交流稳压电源的... 本文针对614型电子管交流稳压电源的大量损坏和报废情况,叙述了一种用集成运放LM324等元件构成的交流稳压电路替换其原有的电子管交流稳压电路的方法。该交流稳压控制电路体积和功耗大大缩小,价格低廉,提高了交流稳压电源的效率,延长了连续工作时间,扩大了交流稳压范围(稳压范围达交流165V至242V),同时增加了过压欠压保护功能。 展开更多
关键词 电子管 交流稳压电源 改造 基准电压 磁饱和控制
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Performance calculation and improved model research of direct-drive permanent magnet generator based on FEM 被引量:1
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作者 ZHANG Jian LI HeMing +2 位作者 LUO YingLi DOU Na CUI XueShen 《Science China(Technological Sciences)》 SCIE EI CAS 2012年第8期2338-2345,共8页
In some control strategies of the direct-rive permanent magnet generator(DDPMG),the mathematics model is excessively simplified and some complex nonlinear characteristics,such as core saturation and cross-saturation,a... In some control strategies of the direct-rive permanent magnet generator(DDPMG),the mathematics model is excessively simplified and some complex nonlinear characteristics,such as core saturation and cross-saturation,are generally neglected.To solve this problem,this paper utilizes the frozen element permeability method to compute the armature self-and mutual-inductance,permanent magnet d-and q-axis flux varying with d-axis and q-axis current,then an improved model is presented in which the core saturation and cross-saturation between d-axis and q-axis are considered effectively.Based on this model,the method for computing the performance of the generators is also proposed.Taking a 1.5-MW DDPMG as an example,the time-stepping finite element method(T-S FEM) is adopted to analyze the performance with no-load and loaded conditions,the results show a good agreement with the ones obtained by the improved model.Compared with the simplified model,it is demonstrated that the presented model has the high efficiency and reliability and can provide a good reference for optimization design of DDPMG and other PM motors. 展开更多
关键词 d-q axis cross-saturation DDPMG improved simulation model parameters calculation Time-stepping FEM
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