Hu Yuantai, Xue Huan, Hu Ting, Hu Hongping
Department of Mechanics, Huazhong Univ. of Sci. & Technol., Wuhan, Hubei, China.
IEEE Trans Ultrason Ferroelectr Freq Control. 2008 Jan;55(1):148-60. doi: 10.1109/TUFFC.2008.624.
This paper studies the performance of an energy harvester with a piezoelectric bimorph (PB) and a real electrochemical battery (ECB), both are connected as an integrated system through a rectified dc-dc converter (DDC). A vibrating PB can scavenge energy from the operating environment by the electromechanical coupling. A DDC can effectively match the optimal output voltage of the harvesting structure to the battery voltage. To raise the output power density of PB, a synchronized switch harvesting inductor (SSHI) is used in parallel with the harvesting structure to reverse the voltage through charge transfer between the output electrodes at the transition moments from closed-to open-circuit. Voltage reversal results in earlier arrival of rectifier conduction because the output voltage phases of any two adjacent closed-circuit states are just opposite each other. In principle, a PB is with a smaller, flexural stiffness under closed-circuit condition than under open-circuit condition. Thus, the PB subjected to longer closed-circuit condition will be easier to be accelerated. A larger flexural velocity makes the PB to deflect with larger amplitude, which implies that more mechanical energy will be converted into an electric one. Nonlinear interface between the vibrating PB and the modulating circuit is analyzed in detail, and the effects of SSHI and DDC on the charging efficiency of the storage battery are researched numerically. It was found that the introduction of a DDC in the modulating circuit and an SSHI in the harvesting structure can raise the charging efficiency by several times.
本文研究了一种带有压电双晶片(PB)和实际电化学电池(ECB)的能量收集器的性能,二者通过整流型直流 - 直流转换器(DDC)连接成一个集成系统。振动的压电双晶片可通过机电耦合从工作环境中收集能量。直流 - 直流转换器能有效地将收集结构的最佳输出电压与电池电压匹配。为提高压电双晶片的输出功率密度,在收集结构中并联使用同步开关收获电感(SSHI),以便在从闭路到开路的转换时刻通过输出电极之间的电荷转移来反转电压。电压反转导致整流器传导提前到来,因为任意两个相邻闭路状态的输出电压相位刚好相反。原则上,压电双晶片在闭路条件下的弯曲刚度比开路条件下小。因此,处于较长闭路条件下的压电双晶片将更容易被加速。更大的弯曲速度会使压电双晶片以更大的幅度偏转,这意味着更多的机械能将被转化为电能。详细分析了振动的压电双晶片与调制电路之间的非线性界面,并通过数值研究了同步开关收获电感和直流 - 直流转换器对蓄电池充电效率的影响。研究发现,在调制电路中引入直流 - 直流转换器以及在收集结构中引入同步开关收获电感可将充电效率提高数倍。