【正文】
Six intervals of input three voltage N=sign(B0)+2sign(B1)=4sign(B2) (16) As shown in signals are divided into six 60176。 intervals it satisfies that the signs of the amplitudes of two signals are the same and opposite to the sign of another signal. And no sign change occurs during each interval. The value of N in every sector is interval 1,for example,B0 is positive,B1 and B2 are negative. Six intervals of B0 B1 and B2 The sector in which is depends on the expression (6) Compared with ,it is obvious that the corresponding relations between value N and sector are seen in Table1. Table 1 Determination of sector of based on N Threephase voltage can be treated as a voltage vector Vs. There are many different methods of modulation to synthesize according to the different binations eight vectors. Among these methods,the twophase modulation can make switching loss minimize,in which one switch should be always set ON or OFF in one working desired reference vector is sampled in every subcycle Ts and realized by time averaging the three nearest space vectors in the space vector plane. For example the reference vector shown in magnitude Vs and angleθin sectorⅠis realized by applying the active vector 1the active vector 2 and the zero vectors. The durationsT1,T2 and TZ of the three space vectors respectively is calculated as: ? ?1730 232321 ???????????????? ??????????ssdcs VVVTTT The vector synthetic method of other sector is similar. The expressions which is developed on the universal variable X,Y,Z are shown as following: ? ?182323232330 ????????????????????????????????????VsVVTZYXsdcs For any reference vector the duration time of two space vectors are assigned as Table2. 3 Simulation Results Based on the former analysis the MATLAB/SIMULINK simulation model for the VSR of the test load was implemented using IGBT modules and following values: uRMS≈220V ,L ≈3mH ,R≈ Ω ,C ≈4700 Mf,RL≈16 Ω ,vdc=700V. The following two figures summarize the results of the shows the transient response of the output voltage. The second figure shows transient response of input current. In this simulation at start time the dc bus voltage rests at the diode rectifier level with a resistive load of RL=16Ω .Then,the control action is applied keeping the load resistance and the output voltage increases to the desired dc shows the voltage and current on line side. We can see the current of sinusoidal wave is the same phase with the voltage. Simulation result for DCLink voltage dynamics 4 conclusion In this paper a no linear transformation is used to derive for threephase new control strategy using inner current loop with state feedback decoupling and outer voltage square loop based on the space vector modulation is introduced in this using nonlinear input transformation the conventional nonlinear models can be improved to linear models. This improvement makes the design of the controller bee straightforward. A novel SVPWM algorithm has been described and results shown it has advantages of better controlling precision fewer switching motions simpler calculation easier realization with microputer higher utilization of DC voltage. Simulation result for voltage and current waveform of phase A