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Adaptive genetic algorithm-based approach to improve the synthesis of two-dimensional finite impulse response filters

机译:基于自适应遗传算法的二维有限脉冲响应滤波器合成方法

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The design of finite impulse response (FIR) filters can be formulated as a non-linear optimization problem reputed to be difficult for conventional approaches. The constraints are high and a large number of parameters have to be estimated, especially when dealing with two-dimensional FIR filters. In order to improve the performance of conventional approaches, the authors explore several stochastic methodologies capable of handling large spaces. The authors specifically propose a new genetic algorithm (GA) in which some innovative concepts are introduced to improve the convergence and make its use easier for practitioners. The algorithm is globally improved by adapting the mutation and crossover and selection operators with the genetic advances. A dynamic ranking selection scheme is introduced to limit the promotion of extraordinary chromosomes. A refreshing mechanism is investigated to manage the trade-off between diversity and elitism. The key point of the proposed approach stems from the capacity of the GA to adapt the genetic operators during the genetic life while remaining simple and easy to implement. Most of the parameters and operators are changed by the GA itself. From an initial calibration, the GA performs the design problem while calibrating and repeatedly re-calibrating itself for solving it. The authors demonstrate on various cases of filter design a significant improvement in performance.
机译:有限冲激响应(FIR)滤波器的设计可以表述为非线性优化问题,对于传统方法而言这是困难的。约束很高,必须估计大量参数,尤其是在处理二维FIR滤波器时。为了提高传统方法的性能,作者探索了几种能够处理大空间的随机方法。作者专门提出了一种新的遗传算法(GA),其中引入了一些创新的概念来改善收敛性并使从业者更容易使用它。通过使突变,交叉和选择算子适应遗传学要求,对算法进行了全面改进。引入动态排序选择方案以限制非常规染色体的提升。研究了一种刷新机制来管理多样性与精英之间的权衡。拟议方法的重点在于遗传算法在遗传生命中适应遗传操作员的能力,同时保持简单易行。 GA本身会更改大多数参数和运算符。从初始校准开始,GA会执行设计问题,同时对其进行校准并反复重新校准以解决该问题。作者在各种滤波器设计案例中证明了性能的显着提高。

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