There exists an optimal range of intensity of a chaotic force in which the behavior of a chaos-driven bistable system with two weak inputs can be consistently mapped to a specific logic output. This phenomenon is call...There exists an optimal range of intensity of a chaotic force in which the behavior of a chaos-driven bistable system with two weak inputs can be consistently mapped to a specific logic output. This phenomenon is called logical chaotic resonance(LCR). However, realization of a reliable exclusive disjunction(XOR) through LCR has not been reported.Here, we explore the possibility of using chaos to enhance the reliability of XOR logic operation in a triple-well potential system via LCR. The success probability P of obtaining XOR logic operation can take the maximum value of 1 in an optimal window of intensity D of a chaotic force. Namely, success probability P displays characteristic bell-shaped behavior by altering the intensity of the chaotic driving force, indicating the occurrence of LCR. Further, the effects of periodic force on LCR have been investigated. For a subthreshold chaotic force, a periodic force with appropriate amplitude and frequency can help enhance the reliability of XOR logic operation. Thus, LCR can be effectively regulated by changing the amplitude and frequency of the periodic force.展开更多
基于人眼视觉感知特性,提出了一种新型的边缘检测和XOR编码相结合的图像自适应隐写算法。通过设计基于灰狼优化(grey wolf optimization,GWO)算法的边缘检测,根据秘密信息的大小自适应地调整边缘检测阈值,利用粒子群优化(particle swarm...基于人眼视觉感知特性,提出了一种新型的边缘检测和XOR编码相结合的图像自适应隐写算法。通过设计基于灰狼优化(grey wolf optimization,GWO)算法的边缘检测,根据秘密信息的大小自适应地调整边缘检测阈值,利用粒子群优化(particle swarm optimization,PSO)算法优化边缘和非边缘像素的嵌入位数,结合XOR编码实现对混沌加密后的秘密信息的嵌入。实验结果表明,该隐写算法比现有文献算法具有更大的隐写容量,能较好地保持载密图像的不可感知性,并已通过像素差值直方图(pixel difference histogram,PDH)安全性分析。展开更多
基金supported by the Technology Innovation Team Program in Higher Education Institutions in Hubei Province, China (Grant No. T2020039)。
文摘There exists an optimal range of intensity of a chaotic force in which the behavior of a chaos-driven bistable system with two weak inputs can be consistently mapped to a specific logic output. This phenomenon is called logical chaotic resonance(LCR). However, realization of a reliable exclusive disjunction(XOR) through LCR has not been reported.Here, we explore the possibility of using chaos to enhance the reliability of XOR logic operation in a triple-well potential system via LCR. The success probability P of obtaining XOR logic operation can take the maximum value of 1 in an optimal window of intensity D of a chaotic force. Namely, success probability P displays characteristic bell-shaped behavior by altering the intensity of the chaotic driving force, indicating the occurrence of LCR. Further, the effects of periodic force on LCR have been investigated. For a subthreshold chaotic force, a periodic force with appropriate amplitude and frequency can help enhance the reliability of XOR logic operation. Thus, LCR can be effectively regulated by changing the amplitude and frequency of the periodic force.