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Design and Implementation of a Single Phase Inverter with Sine Wave Tracking Method for Emergency Power Supply with High Performance Reference

机译:具有高性能参考的应急电源单相正弦波跟踪逆变器的设计与实现

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Uninterruptible Power Supplies (UPS) play an important role in supplying critical loads. The majority of UPS systems employ batteries as a mean of energy storage. Since typical loads are supplied by ac voltage, an inverter is an indispensable part of a UPS to convert dc voltage to ac. Conventional control methods for single phase inverters suffers from many drawbacks like slow dynamic/transient response, oscillatory no-load behavior and distorted waveform in presence of non-linear loads. This paper in concerned with the control loop design for a single-phase voltage source inverter when employed in UPS applications. The regulation of the output voltage is done based on reference tracking to ensure good steady-state and dynamic performance. The control loop is designed taking into consideration the low damping during light loads. Three control strategies are proposed. The first is based on modified PID controller which demonstrated moderate performance and is suitable for low cost applications. The second method is based on an additional current control loop which has the benefit of inherent inverter protection. The last method is based on the theory of "Internal Model Controller" which gives nearly ideal steady-state regulation. Key points in implementing controllers with digital controllers are addressed. An experimental system is built to verify the validity of theoretical results.
机译:不间断电源(UPS)在提供关键负载方面起着重要作用。大多数UPS系统使用电池作为能量存储的手段。由于典型负载是由交流电压提供的,因此逆变器是UPS不可或缺的一部分,可将直流电压转换为交流电压。用于单相逆变器的常规控制方法具有许多缺点,例如,缓慢的动态/瞬态响应,振荡的空载行为以及存在非线性负载时的波形失真。本文涉及用于UPS应用中的单相电压源逆变器的控制回路设计。输出电压的调节是基于参考跟踪进行的,以确保良好的稳态和动态性能。设计控制回路时要考虑到轻载时的低阻尼。提出了三种控制策略。第一种是基于改进的PID控制器,该控制器表现出适中的性能,适用于低成本应用。第二种方法基于附加的电流控制环路,该环路具有固有的逆变器保护优势。最后一种方法基于“内部模型控制器”的理论,该理论给出了近乎理想的稳态调节。解决了使用数字控制器实现控制器的关键点。建立了实验系统以验证理论结果的有效性。

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