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Harmonics assessment and mitigation in medical diagnosis equipment

机译:医疗诊断设备中的谐波评估和缓解

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Poor power quality in electrical power systems can lead to medical equipment at healthcare centers to malfunction and present wrong medical diagnosis. Equipment such as X-rays, computerized axial tomography, etc. can pollute the system due to their high level of harmonics production, which may cause a number of undesirable effects like heating, equipment damages and electromagnetic interferences. The conventional approach of mitigation uses passive inductor/capacitor (LC) filters, which has some drawbacks such as, large sizes and resonance problems. The current trends of solutions generally employ active power filters using suitable control algorithms. This work focuses on assessing the level of Total Harmonic Distortion (THD) on medical facilities and various ways of mitigation, using radiology unit of an existing hospital as a case. Measurements are conducted with a power quality analyzer at the point of common coupling (PCC). The levels of measured THDs are found to be higher than the IEEE 519-1992 standard limits. For mitigation, a shunt active filter is developed using synchronous detection algorithm to extract the fundamental component of the source currents. Fuzzy logic controller is then developed to control the filter. The THD without the active power filter are validated using the measured values. The THD with the developed filter show that the harmonics are now within the recommended limits.
机译:电力系统中的电能质量差会导致医疗中心的医疗设备出现故障并提出错误的医疗诊断。 X射线,计算机轴向断层扫描等设备可能会产生高水平的谐波,从而污染系统,这可能会引起许多不良影响,例如发热,设备损坏和电磁干扰。缓解的传统方法使用无源电感器/电容器(LC)滤波器,它具有一些缺点,例如尺寸大和谐振问题。解决方案的当前趋势通常使用具有适当控制算法的有源功率滤波器。这项工作的重点是,以现有医院的放射科为例,评估医疗机构的总谐波失真(THD)水平和各种缓解方法。使用电能质量分析仪在公共耦合点(PCC)进行测量。发现测得的THD级别高于IEEE 519-1992标准限制。为了缓解这种情况,使用同步检测算法开发了一个并联有源滤波器,以提取源电流的基本成分。然后开发模糊逻辑控制器来控制滤波器。不带有源功率滤波器的THD使用测量值进行验证。带有已开发滤波器的THD表明,谐波现在在建议的限制内。

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