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本文(外文翻译风力发电中的自我激励与谐波.docx)为本站会员(b****1)主动上传,冰豆网仅提供信息存储空间,仅对用户上传内容的表现方式做保护处理,对上载内容本身不做任何修改或编辑。 若此文所含内容侵犯了您的版权或隐私,请立即通知冰豆网(发送邮件至service@bdocx.com或直接QQ联系客服),我们立即给予删除!

外文翻译风力发电中的自我激励与谐波.docx

1、外文翻译风力发电中的自我激励与谐波Self-Excitation and Harmonics in Wind Power GenerationE. Muljadi , C. P. ButterfieldNational Renewable Energy Laboratory, Golden, Colorado 80401H. RomanowitzOak Creek Energy Systems Inc.,Mojave, California 93501R. YingerSouthern California Edison,Rosemead, California 91770Traditiona

2、l wind turbines are commonly equipped with induction generators because they are inexpensive, rugged, and require very little maintenance. Unfortunately, induction generators require reactive power from the grid to operate,capacitor compensation is often used. Because the level of required reactive

3、power varies with the output power, the capacitor compensation must be adjusted as the output power varies. The interactions among the wind turbine, the power network, and the capacitor compensation are important aspects of wind generation that may result in self-excitation and higher harmonic conte

4、nt in the output current. This paper examines the factors that control these phenomena and gives some guidelines on how they can be controlled or eliminated.1Introduction Many of todays operating wind turbines have fixed speed induction generators that are very reliable, rugged, and low cost. During

5、 normal operation, an induction machine requires reactive power from the grid at all times. The most commonly used reactive power compensation is capacitor compensation. It is static, low cost. Different sizes of capacitors are generally needed for different levels of generation.Although reactive po

6、wer compensation can be beneficial to the overall operation of wind turbines, we should be sure the compensation is the proper size and provides proper control. Two important aspects of capacitor compensation, self-excitation and harmonics ,are the subjects of this paper.2Power System Network Descri

7、ption A diagram representing this system is shown in Fig(1). The power system components analyzed include the following: An infinite bus and a long line connecting the wind turbine to the substation A transformer at the pad mount Capacitors connected in the low voltage side of the transformer An ind

8、uction generatorFor the self-excitation, we focus on the turbine and the capacitor compensation only the right half of Fig. For harmonic analysis, we consider the entire network shown in Fig.3. Self-Excitation3.1 The Nature of Self-Excitation in an Induction Generator. Self-excitation is a result of

9、 the interactions among the induction generator, capacitor compensation, electrical load, and magnetic saturation. This section investigates the self-excitation process in an off-grid induction generator, knowing the limits and the boundaries of self-excitation operation will help us to either utili

10、ze or to avoid self-excitation.Fixed capacitors are the most commonly used method of reactive power compensation in a fixed-speed wind turbine. An induction generator alone cannot generate its own reactive power; it requires reactive power from the grid to operate normally, and the grid dictates the

11、 voltage and frequency of the induction generator.One potential problem arising from self-excitation is the safety aspect. Because the generator is still generating voltage, it may compromise the safety of the personnel inspecting or repairing the line or generator. Another potential problem is that

12、 the generators operating voltage and frequency may vary. Thus, if sensitive equipment is connected to the generator during self-excitation, that equipment may be damaged by over/under voltage and over/ under frequency operation. In spite of the disadvantages of operating the induction generator in

13、self-excitation, some people use this mode for dynamic braking to help control the rotor speed during an emergency such as a grid loss condition. With the proper choice of capacitance and resistor load, self-excitation can be used to maintain the wind turbine at a safe operating speed during grid lo

14、ss and mechanical brake malfunctions。3.2 Steady-State Representation. The steady-state analysis is important to understand the conditions required to sustain or to diminish self-excitation. As explained above, self-excitation can be a good thing or a bad thing, depending on how we encounter the situ

15、ation. Figure 2 shows an equivalent circuit of a capacitor compensated induction generator. As mentioned above, self-excitation operation requires that the balance of both real and reactive power must be maintained. Equation (1)gives the total admittance of the system shown in Fig(2):+=0 (1)where= e

16、ffective admittance representing the stator winding, the capacitor, and the load seen by node M= effective admittance representing the magnetizing branch as seen by node M,referred to the stator side= effective admittance representing the rotor winding as seen by node M, referred to the stator sideEquation 1 can be expanded into the equations for imaginary and real parts as shown in Eqs.2and3: (2)Fig. 2 Per phase equ

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