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FPGA implementation of genetic algorithm for dynamic filter-bank-based multicarrier systems

机译:基于动态滤波器组的多载波系统遗传算法的FPGA实现

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This paper presents FPGA implementation of a genetic algorithm based canonical signed digit (CSD) synthesizer for a dynamic filter-bank-based multicarrier system which employs a regular prototype filter with a certain specification. Using Genetic Algorithm, the proposed system searches for the best coefficients of prototype filter in CSD format for the filter bank based multicarrier (FBMC) system. The system is reconfigurable so that filter characteristics (number of coefficients) and their precisions (number of bits) for each coefficient can be set dynamically. Finally, the design is entirely implemented on a field programmable gate array (FPGA) chip. Simulations and synthesis results are obtained to show the merit of the proposed design. Results demonstrate that the system needs less than one second to provide desired filter coefficients when a prototype filter with 64 coefficients is employed.
机译:本文介绍了一种基于遗传算法的规范化数字合成器(CSD)合成器的遗传算法的FPGA实现,该合成器用于基于动态滤波器组的多载波系统,该系统采用具有特定规格的常规原型滤波器。提出的系统使用遗传算法为基于滤波器组的多载波(FBMC)系统搜索CSD格式的原型滤波器的最佳系数。该系统是可重新配置的,因此可以动态设置每个系数的滤波器特性(系数数)及其精度(位数)。最后,该设计完全在现场可编程门阵列(FPGA)芯片上实现。仿真和综合结果表明了拟议设计的优点。结果表明,当采用具有64个系数的原型滤波器时,系统只需不到一秒钟即可提供所需的滤波器系数。

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