ID 原文 译文
15605 进一步,为了确保电流型忆阻Cuk变换器能够稳定工作,推导了系统稳定运行的参数域解析表达式。 Furthermore, an analytical expression for ensuring the stable operation of this memristive Cuk converter was obtained.
15606 此外,还通过引入斜坡补偿信号使系统从混沌状态切换到稳定的周期态,从而实现系统的混沌控制。 In addition, a slope compensation signal was introduced to switch the system from a chaotic state to a stable periodic state, thereby the chaos control of the system was realized.
15607 最后,采用PSIM对电路进行了仿真分析,仿真结果验证了系统的动力学和控制方法的有效性。 Finally , a PSIM simulation model was constructed, and the simulation results confirmed the dynamics of the system and the effectiveness of the control method.
15608 为拓广忆阻器仿真和应用研究,通过分析压控型忆阻器的数学模型,建立了一种基于Simulink的双端口模型。 In order to expand the simulation and application research of memristors, a dualport model based on Simulink was established by analyzing the mathematical model of a voltage-controlled memristor.
15609 首先,将忆阻器的电流表示为忆导与输入电压的乘积;将忆阻器的阻值变化率表示为输入电压的三次非线性函数和阶跃函数的乘积。 Firstly, the current of the memristor was expressed as the product of the memory and the input voltage, and the change rate of the memristive resistance value was expressed as the product of the cubic nonlinear function and the step function.
15610 然后,将忆阻器的电流作为受控电流源的控制信号,通过电压源、阻值变化率和积分器获得忆阻器的阻值,实现忆阻器的双端口建模,该模型体现了忆阻值对历史状态的依赖性。 The current was used as the control signal of the controlled current source, and the resistance of the memristor was obtained from the voltage source, the resistance change rate and the integrator,and the dual port modeling of the memristor was realized. The model reflects the dependence of the memristor on historical state.
15611 最后,通过对双端口模型输入不同信号的仿真,验证了双端口模型的有效性,得到了滞回环曲线随幅值和频率的变化规律。 Finally,using the simulation of different input signals of the dual-port model, the validity of the dual-port model is verified, and the variation rule of hysteresis loop curve with amplitude and frequency is obtained.
15612 建立的双端口模型可与其他二端口元件直接相连,拓广了忆阻器的应用范围。 The established dual-port model can be directly connected with other two-port components, and this expands the application range of memristors.
15613 超级电容器的出现为储能带来了新的选择,目前广泛应用于能源交通、航空航天、电子科技等领域,大大提高了科技发展水平和人民生活质量。 The supercapacitors has brought new options for energy storage and has been widely used in energy transportation, aerospace, electronic technology and other fields, which greatly improved the level of scientific and technological development and the life quality of people.
15614 为进一步提高超级电容器的性能,制备具有分层结构的复合电极材料成为人们研究的重点。 In order to further improve the performance of supercapacitors, the preparation of composite electrode materials with a layered structure is becoming the focus of the research.