针对传统Buck变换器存在响应速度慢、过冲大、稳定性差等问题,提出了一种具有宽输入输出电流模式自适应导通时间(current mode adaptive on time,CM-AOT)控制方法以提升Buck变换器的工作性能.在研究中,补偿电路和一种新型的TON发生器可...针对传统Buck变换器存在响应速度慢、过冲大、稳定性差等问题,提出了一种具有宽输入输出电流模式自适应导通时间(current mode adaptive on time,CM-AOT)控制方法以提升Buck变换器的工作性能.在研究中,补偿电路和一种新型的TON发生器可以通过自然增减负载升压或降压瞬态中的开启时间来改善瞬态性能.转换器在稳态下呈伪恒定频率状态,并且频率不会随输入和输出的变化而变化.由于TON的变化仅发生在瞬态区间,因此不会影响COT控件的小信号特性.电路理论分析与仿真结果表明,此新型控制方法可显著提升开关响应速度,有效降低电压过冲,且具有较宽的输入输出,可适用于多种实际应用场景.展开更多
Recent investigations have shown that with varying the amplitude of the external force, the deterministic ratchets exhibit multiple current reversals, which are undesirable in certain circumstances. To control the mul...Recent investigations have shown that with varying the amplitude of the external force, the deterministic ratchets exhibit multiple current reversals, which are undesirable in certain circumstances. To control the multiple reverse current to unidirectional current, an adaptive control law is presented inspired from the relation between multiple reversaJs current and the chaos-periodic/quasiperiodic transition of the transport velocity. The designed controller can stabilize the transport velocity of ratchets to steady state and suppress any chaos-periodic/quasiperiodic transition, namely, the stable transport in ratchets is achieved, which makes the current sign unchanged.展开更多
文摘针对传统Buck变换器存在响应速度慢、过冲大、稳定性差等问题,提出了一种具有宽输入输出电流模式自适应导通时间(current mode adaptive on time,CM-AOT)控制方法以提升Buck变换器的工作性能.在研究中,补偿电路和一种新型的TON发生器可以通过自然增减负载升压或降压瞬态中的开启时间来改善瞬态性能.转换器在稳态下呈伪恒定频率状态,并且频率不会随输入和输出的变化而变化.由于TON的变化仅发生在瞬态区间,因此不会影响COT控件的小信号特性.电路理论分析与仿真结果表明,此新型控制方法可显著提升开关响应速度,有效降低电压过冲,且具有较宽的输入输出,可适用于多种实际应用场景.
基金Supported by the National Natural Science Foundation of China under Grant Nos. 10862001 and 10947011the Construction of Key Laboratories in Universities of Guangxi under Grant No. 200912
文摘Recent investigations have shown that with varying the amplitude of the external force, the deterministic ratchets exhibit multiple current reversals, which are undesirable in certain circumstances. To control the multiple reverse current to unidirectional current, an adaptive control law is presented inspired from the relation between multiple reversaJs current and the chaos-periodic/quasiperiodic transition of the transport velocity. The designed controller can stabilize the transport velocity of ratchets to steady state and suppress any chaos-periodic/quasiperiodic transition, namely, the stable transport in ratchets is achieved, which makes the current sign unchanged.