Development of Control Strategy for Power Supply to Optimize Thermals Effects Induced in X-rays Tube for Medical use

R. Mohamed, M. Tarik
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Abstract

through this study, an approach has been developed to achieve a power transfer control strategy for supplying an X-rays tube belonging to the field of medical imaging. And those, under ideal conditions, through the stages of conversion of electrical energy, whose qualities of each stage behavior, have been effectively selected and simultaneously arranged. So, in addition, concerns about the size, the volume and the weight of these assemblies, the thermal stresses persist strongly in the fragility of the X-rays generators. To develop the optimization of thermal accumulations, a contribution hybrid controller is tested to overcome these disadvantages. The successive radiological outlets tend to increase the thermal effects, despite the fact that the time and the cooling system, which remain insufficient, lead to a longer and more cost-effective life of these expensive equipment. Instructively, the prescription of any booting supply must be included in the standardized load range, in accordance with the time constants and depreciation developed by the system. However, the results obtained confirm this load selection state, including the performance and response qualities of the system in the vicinity of the conditions previously dictated by the specifications of this load of this type of power supply.
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优化医用x射线管热效应的电源控制策略研究
通过本研究,开发了一种用于医学成像领域的x射线管供电的功率传输控制策略。在理想条件下,通过电能转换的各个阶段,其各阶段行为的性质都得到了有效的选择和同时安排。另外,考虑到这些组件的大小,体积和重量,热应力在脆弱的x射线发生器中持续存在。为了开发热积累的优化,测试了一种贡献混合控制器来克服这些缺点。尽管时间和冷却系统仍然不足,但连续的辐射出口往往会增加热效应,导致这些昂贵设备的使用寿命更长,更具成本效益。有指导意义的是,任何启动电源的处方必须包含在标准负载范围内,与系统开发的时间常数和折旧相一致。然而,所获得的结果证实了这种负载选择状态,包括系统的性能和响应质量在之前由这种类型的电源的这种负载的规格所规定的条件附近。
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