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A bio-inspired algorithm based on membrane computing and its application to gasoline blending scheduling

机译:基于膜计算的生物启发算法及其在汽油调配中的应用

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For the purpose of applying membrane computing as a global optimization technique, a bio-inspired algorithm based on membrane computing (BIAMC) is proposed to solve both constrained and unconstrained problems. The membrane structure used in BIAMC is a network of membranes that is inspired by the Golgi apparatus. In the process of approaching to the optimum solution, the objects containing a tentative solution are evolved by the rewriting rule in the parallel identical membranes and synthesized by the novel rules of target indication, transition and abstraction in the membrane of quasi-Golgi. The information transfers according to directions defined by the communication rule. Eight well-known unconstrained and constrained functions are used for performance testing. Then we apply the proposed algorithm with two schemes to solving a typical nonlinear optimization of gasoline blending and scheduling problem. The results show that the proposed approach can find optimal or close-to-optimal solutions efficiently.
机译:为了将膜计算作为一种全局优化技术,提出了一种基于膜计算的生物启发算法(BIAMC)来解决约束和非约束问题。 BIAMC中使用的膜结构是受高尔基体启发的膜网络。在寻求最优解的过程中,包含试探性解的对象通过平行相同膜中的重写规则演化,并通过准高尔基体膜中的目标指示,过渡和抽象新规则进行合成。信息根据通信规则定义的方向进行传输。八个众所周知的不受约束和受约束的函数用于性能测试。然后,我们将所提出的算法与两种方案一起应用,以解决典型的汽油混合和调度问题的非线性优化问题。结果表明,该方法可以有效地找到最优解或接近最优解。

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