An autocatalytic biochemical system in the presence of recycling enzyme is solved numerically using two numerical methods based on finite difference schemes. The first method is the well known Euler method which is an...An autocatalytic biochemical system in the presence of recycling enzyme is solved numerically using two numerical methods based on finite difference schemes. The first method is the well known Euler method which is an explicit method, whereas the second method is implicit. Although the implicit method, method 2, is first-order accurate in time it converges to the fixed point(s) for large time step, L Numerical results show the existence of hard excitation and birhythmicity.展开更多
文摘传统的检测方法存在识别率低、特征维度高的缺点,为此对特征维度与拼接检测精度之间的关系进行分析,基于以像素为基础的改进特征维度的思想,提出一种信息熵与差分激励融合的图像拼接检测方法。提取图像信息熵和韦伯局部特征中(Weber local descriptor,WLD)的差分激励,采用差分直方图进行特征融合,使用v-SVM(v-support vector machine)分类器建立模型,判定图像是否经过拼接。实验结果表明,在哥伦比亚图片库拼接检测中,相比传统的马尔科夫特征、韦伯局部特征等算法,该方法的检测结果具有特征维度低、检测精度高、应用范围广的优点,为快速拼接检测提供了依据。
文摘An autocatalytic biochemical system in the presence of recycling enzyme is solved numerically using two numerical methods based on finite difference schemes. The first method is the well known Euler method which is an explicit method, whereas the second method is implicit. Although the implicit method, method 2, is first-order accurate in time it converges to the fixed point(s) for large time step, L Numerical results show the existence of hard excitation and birhythmicity.