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Design a novel bandpass filter with microstrip resonator loaded capacitors using CFO-HC algorithm

机译:使用CFO-HC算法设计带有微带谐振器负载电容器的新型带通滤波器

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This paper introduces a new way to reduce the length of a microstrip end-coupled resonator by loading its ends by a lumped capacitors. A new way of controlling the frequency of the 2nd harmonic even mode by loading the center of the resonator by a lumped capacitor directly or through less than 0.125 λgo part of a microstrip transmission line. Compact dual and triple modes bandpass filters with good selectivity are obtained. The length of transmission line section controls the phase and transforms the impedance of the capacitor which controls the bandwidth and generates transmission zeros. The transmission zeros can be located at upper or lower side of the passband by adjusting the loading capacitor values or the length of the transmission line. A second order bandpass filter with center frequency of 4 GHz is designed, fabricated and measured. The filter has a passband from 3.6 GHz to 4.4 GHz with a transmission zero at 4.8 GHz. The filter has good stopband performance with a rejection higher than 20 dB up to more than 10 GHz. Insertion loss of less than 0.75 is achieved within the passband. The measured results exhibit good agreement with the simulation one. An efficient global hybrid optimization method is proposed combining the Central Force Optimization (CFO) as a global optimizer and Hillclimbing (HC) algorithm as a local optimizer. After the final global iteration, a local optimization can be followed to further improve the solution obtained from the CFO. The hybrid Central Force Optimization and Hillclimbing (CFO-HC) algorithm is used to optimize the dimensions and values of the capacitance which contact them the filter, the (CFO-HC) algorithm was implemented using MATLAB-software and linked to the CST simulator to simulate the filter, In addition the optimized filter is simulated by the Finite Difference Time Domain (FDTD) program written with matlab to validate the results.
机译:本文介绍了一种通过将集总电容器的两端负载来减小微带端耦合谐振器长度的新方法。一种控制二次谐波偶数模式频率的新方法,该方法是通过集总电容器直接或通过微带传输线的小于0.125λinf的一部分来加载谐振器的中心。获得具有良好选择性的紧凑型双模和三模带通滤波器。传输线部分的长度控制相位并变换电容器的阻抗,电容器控制带宽并产生传输零点。通过调整负载电容值或传输线的长度,可以将传输零点放置在通带的上侧或下侧。设计,制造和测量了中心频率为4 GHz的二阶带通滤波器。该滤波器的通带范围为3.6 GHz至4.4 GHz,传输率为4.8 GHz时为零。该滤波器具有良好的阻带性能,在超过10 GHz的频率下,其抑制比高于20 dB。通带内的插入损耗小于0.75。测量结果与模拟结果吻合良好。提出了一种有效的全局混合优化方法,该方法结合了作为全局优化器的中央力优化(CFO)和作为局部优化器的Hillclimbing(HC)算法。在最终的全局迭代之后,可以进行局部优化以进一步改善从CFO获得的解决方案。混合的中央力优化和爬坡(CFO-HC)算法用于优化与滤波器接触的电容的尺寸和值,(CFO-HC)算法是使用MATLAB软件实现的,并与CST模拟器链接模拟滤波器,此外,优化的滤波器由用matlab编写的有限时域(FDTD)程序进行模拟,以验证结果。

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