Gain based predistorter (PD) is a highly effective and simple digital baseband predistorter which compensates for the nonlinear distortion of PAs. Lookup table (LUT) is the core of the gain based PD. This paper presen...Gain based predistorter (PD) is a highly effective and simple digital baseband predistorter which compensates for the nonlinear distortion of PAs. Lookup table (LUT) is the core of the gain based PD. This paper presents a discrete Newton’s method based adaptive technique to modify LUT. We simplify and convert the hardship of adaptive updating LUT to the roots finding problem for a system of two element real equations on athematics. And we deduce discrete Newton’s method based adaptive iterative formula used for updating LUT. The iterative formula of the proposed method is in real number field, but secant method previously published is in complex number field. So the proposed method reduces the number of real multiplications and is implemented with ease by hardware. Furthermore, computer simulation results verify gain based PD using discrete Newton’s method could rectify nonlinear distortion and improve system performance. Also, the simulation results reveal the proposed method reaches to the stable statement in fewer iteration times and less runtime than secant method.展开更多
针对纯电动汽车动力电池健康状态(state of health,SOH)预测中非线性影响因素多、算法繁杂、难以在单片机开发平台中实现等难点,首先利用累计充电循环次数计量法得到使用循环次数,将SOH与使用循环次数、内阻变化量、电压降值的相关非线...针对纯电动汽车动力电池健康状态(state of health,SOH)预测中非线性影响因素多、算法繁杂、难以在单片机开发平台中实现等难点,首先利用累计充电循环次数计量法得到使用循环次数,将SOH与使用循环次数、内阻变化量、电压降值的相关非线性关系转换成离散的二维数据表,依据使用条件,采用二分查表法获得不同估计方法下SOH值;再将使用循环次数、电压降值和内阻变化量作为输入量,以相应SOH的权重作为输出,利用T-S模糊控制建立SOH动态预测模型,根据权重和边界条件计算得到SOH.仿真结果表明,所提方法最大预测误差4.3%,响应时间55ms内,预测效果比现有方法显著提高.展开更多
文摘Gain based predistorter (PD) is a highly effective and simple digital baseband predistorter which compensates for the nonlinear distortion of PAs. Lookup table (LUT) is the core of the gain based PD. This paper presents a discrete Newton’s method based adaptive technique to modify LUT. We simplify and convert the hardship of adaptive updating LUT to the roots finding problem for a system of two element real equations on athematics. And we deduce discrete Newton’s method based adaptive iterative formula used for updating LUT. The iterative formula of the proposed method is in real number field, but secant method previously published is in complex number field. So the proposed method reduces the number of real multiplications and is implemented with ease by hardware. Furthermore, computer simulation results verify gain based PD using discrete Newton’s method could rectify nonlinear distortion and improve system performance. Also, the simulation results reveal the proposed method reaches to the stable statement in fewer iteration times and less runtime than secant method.
文摘针对纯电动汽车动力电池健康状态(state of health,SOH)预测中非线性影响因素多、算法繁杂、难以在单片机开发平台中实现等难点,首先利用累计充电循环次数计量法得到使用循环次数,将SOH与使用循环次数、内阻变化量、电压降值的相关非线性关系转换成离散的二维数据表,依据使用条件,采用二分查表法获得不同估计方法下SOH值;再将使用循环次数、电压降值和内阻变化量作为输入量,以相应SOH的权重作为输出,利用T-S模糊控制建立SOH动态预测模型,根据权重和边界条件计算得到SOH.仿真结果表明,所提方法最大预测误差4.3%,响应时间55ms内,预测效果比现有方法显著提高.