基于SVC建模的医疗中心电能质量优化与无功控制

L. Daloub
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引用次数: 1

摘要

医院和医疗中心的电力负荷从供电源吸收无功功率,导致低功率因数运行状态。根据负载类型和模式,可以使用各种补偿策略来纠正和抵消快速变化。电压源静态同步无功补偿器(SVC)不依赖于无源元件进行无功控制,因为它使用电子电路在施加电压和注入网络的电流之间产生引线或滞后角,以产生容性或吸收电感(无功)。这种做法成为无功控制系统中最先进的技术,结合了功率和控制工程,以毫秒级响应动态系统变化。本文明确了目前存在的电能质量问题,并通过仿真探索了480张床位的医院配电系统的实测值,提出了配电系统的模型。将SVC应用于综合医院稳态条件下的稳压和功率因数的提高。
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Power quality optimization and reactive power control by modeling of SVC in healthcare centre
Electric load of hospitals and medical centers draws reactive power from supply sources resulting in low power factor operating condition. Depending on the load type and patterns, various compensating strategies can be used to correct and counteract rapid variations. Voltage Sourced Static Synchronous VAR Compensators (SVC) doesn't depend on passive components for reactive power control since it uses electronic circuits to create lead or lag angles between applied voltage and injected current into the network to generate capacitive or absorbs inductive (Reactive Power). This practice became a state-of-art technology in reactive power control systems combining both, power and control engineering, to respond to dynamic system variations in milliseconds. The paper clearly address an existing problem of power quality and presents a model of distribution system in 480 bed hospital context using measured values explored through simulation. It uses SVC for voltage stabilizing and improving of power factor in general hospital with steady state condition.
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