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作 者:董伟 陈小龙 董锋格 任康成 DONG Wei CHEN Xiaolong DONG Fengge REN Kangcheng(Changzhou Xingyu Automotive Lighting Systems Co., Ltd., Changzhou Jiangsu 213001, China)
机构地区:[1]常州星宇车灯股份有限公司,江苏常州213001
出 处:《汽车零部件》2016年第12期32-36,共5页Automobile Parts
摘 要:V^2控制是基于输出电压纹波的双环电压型控制方法,具有对负载变化的超快响应速度,通常应用于对输出响应要求较高的开关变换器中。但在输出电容等效串联电阻(ESR)较小时,V^2控制Buck变换器会工作在不稳定状态,往往出现开关频率变化、输出电压纹波偏大等现象。为改善这些缺点,提出固定导通时间V^2控制技术,用导通定时器取代原先的时钟脉冲信号,使得开关变换器保留了V^2控制的优点,同时可以应用恒定导通时间控制方法来计算合适的输出电容参数,降低了V^2控制Buck变换器输出电容参数的计算难度,也避免了需要增加斜坡补偿来消除时钟脉冲占空比大于50%时的开环不稳定和次谐波振荡这一措施。PSIM电路仿真验证了分析的正确性。V^2 control is a double voltage control method based on output voltage ripple; it has a fast transient response speed, so it is suitable for various applications which require fast transient response. However, when equivalent series resistance (ESR) of output capacitor is small, the V^2 controlled buck converter works in instability state, which will cause variable-frequency and high output ripple. In order to avoid the disadvantages, constant on-time V^2 control method was proposed by adding an on-timer to replace the clock signal, so the V^2 controlled ad- vantages were retained, and constant on-time control method could be used to calculate the proper capacitance parameter. In this case, the dif- ficulties of calculating capacitance parameter for V^2 controlled buck converter were reduced, and it was also avoided slope compensation should be added to eliminate the open loop instability and sub-harmonic oscillation when clock signal' s duty exceeded 50%. PSIM simulation results have proved the analysis conclusion.
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