QGA
常見例句
- Simple Genetic Algorithm(SGA) has some disadvantages in the multi-peak functions optimization.So does the Quantum Genetic Algorithm(QGA).
摘要 傳統(tǒng)遺傳算法(SGA)在處理多峰值函數(shù)優(yōu)化問(wèn)題中存在局部收斂性的問(wèn)題,最初的量子遺傳算法(QGA)也存在這一問(wèn)題。 - Compared with the SGA and the QGA,the test results for some important functions show that MQGA is more effective and feasible in some optimization of multi-peak functions.
根據(jù)幾個(gè)重要的測(cè)試函數(shù)進(jìn)行仿真實(shí)驗(yàn)結(jié)果證明,與SGA和QGA相比,改進(jìn)的量子遺傳算法(MQGA)在一些多峰值優(yōu)化問(wèn)題中更具有效性和可行性。 - QGA combining the genetic algorithm and the quantum information theory has a large search space with small population and a good global search capability, while image sparse decomposition based on MP is an optimal problem, so it can be fast solved by QGA.
量子遺傳算法能用較小的種群規(guī)模實(shí)現(xiàn)較大的空間搜索,全局尋優(yōu)能力強(qiáng),匹配追蹤的圖像稀疏分解是最優(yōu)化問(wèn)題,因此可用量子遺傳算法快速實(shí)現(xiàn)。 - Based on system's Basic Scheduling Block (BSB) graph, a HW-SW partitioning model is established. An approach using quantum genetic algorithm (QGA) is proposed to solve this partitioning problem.
針對(duì)嵌入式系統(tǒng)軟硬件協(xié)同設(shè)計(jì)中的軟硬件劃分問(wèn)題,本文在改進(jìn)了基于基本調(diào)度塊圖的軟硬件劃分模型的基礎(chǔ)上,提出了一個(gè)基于量子遺傳算法(QGA)的軟硬件劃分算法。 - Quantum algorithm (QA) with updating of quantum gates and catastrophe of population is compared with quantum genetic algorithm (QGA) by including crossover and mutation for quantum bits.
摘要首先比較了帶量子門更新和群體災(zāi)變的量子算法(QA)以及加入對(duì)量子位的交叉和變異操作的量子遺傳算法(QGA); - Based on system's Basic Scheduling Block (BSB) graph, a HW-SW partitioning model is established.An approach using quantum genetic algorithm (QGA) is proposed to solve this partitioning problem.
針對(duì)嵌入式系統(tǒng)軟硬件協(xié)同設(shè)計(jì)中的軟硬件劃分問(wèn)題,本文在改進(jìn)了基于基本調(diào)度塊圖的軟硬件劃分模型的基礎(chǔ)上,提出了一個(gè)基于量子遺傳算法(QGA)的軟硬件劃分算法。 返回 QGA