We extend a previous model of the author which generalizes Bell local hidden variable models to the case of entangled photon pairs assuming that the standard Bell correlation functions depend on a hidden vacuum index....We extend a previous model of the author which generalizes Bell local hidden variable models to the case of entangled photon pairs assuming that the standard Bell correlation functions depend on a hidden vacuum index. We deduce a generalization of Bell theorem assuming that classical observables are not dichotomic and that photon pair emission and detection is not a stationary stochastic process. We derive a photon imperfect polarization correlation functions due to rotational invariance breaking induced by hidden vacuum spin currents. We implement formally this approach deducing a generalization of C.H.S.H. inequalities which asymptotically converges to the standard one and which might be competitive with standard quantum mechanics predictions. We suggest to test this inequalities conceiving new E.P.R.-Bell like tests with time dependent detector efficiency and photon flux. Finally, we suggest to apply these generalized inequalities to the correlation functions of entangled classical spinning waves realized recently with metamaterials.展开更多
最大可能地降低设备风险是防止电力系统发生事故的有效途径。从分析设备风险的影响因素的角度出发,综合设备重要度和设备隐患对设备风险的影响,定义了设备风险影响度,并提出了设备重要度指标和设备隐患指标,建立了设备风险影响度计算指...最大可能地降低设备风险是防止电力系统发生事故的有效途径。从分析设备风险的影响因素的角度出发,综合设备重要度和设备隐患对设备风险的影响,定义了设备风险影响度,并提出了设备重要度指标和设备隐患指标,建立了设备风险影响度计算指标体系。在该体系的基础上,利用设备相对重要度矩阵和设备相对隐患矩阵构建设备风险影响度计算模型以获取设备的风险影响度,以辨识出对电网可靠、稳定和安全运行具有巨大影响的高风险设备,从而有针对性地对高风险设备进行重点关注,对降低电力系统的总体风险水平具有重要意义。最后,将该方法应用于山西晋城220 k V东沟变电站中主要设备的风险影响度计算。仿真结果验证了所提方法的有效性和可行性,为进一步挖掘高风险设备提供了数据支撑。展开更多
文摘We extend a previous model of the author which generalizes Bell local hidden variable models to the case of entangled photon pairs assuming that the standard Bell correlation functions depend on a hidden vacuum index. We deduce a generalization of Bell theorem assuming that classical observables are not dichotomic and that photon pair emission and detection is not a stationary stochastic process. We derive a photon imperfect polarization correlation functions due to rotational invariance breaking induced by hidden vacuum spin currents. We implement formally this approach deducing a generalization of C.H.S.H. inequalities which asymptotically converges to the standard one and which might be competitive with standard quantum mechanics predictions. We suggest to test this inequalities conceiving new E.P.R.-Bell like tests with time dependent detector efficiency and photon flux. Finally, we suggest to apply these generalized inequalities to the correlation functions of entangled classical spinning waves realized recently with metamaterials.
文摘最大可能地降低设备风险是防止电力系统发生事故的有效途径。从分析设备风险的影响因素的角度出发,综合设备重要度和设备隐患对设备风险的影响,定义了设备风险影响度,并提出了设备重要度指标和设备隐患指标,建立了设备风险影响度计算指标体系。在该体系的基础上,利用设备相对重要度矩阵和设备相对隐患矩阵构建设备风险影响度计算模型以获取设备的风险影响度,以辨识出对电网可靠、稳定和安全运行具有巨大影响的高风险设备,从而有针对性地对高风险设备进行重点关注,对降低电力系统的总体风险水平具有重要意义。最后,将该方法应用于山西晋城220 k V东沟变电站中主要设备的风险影响度计算。仿真结果验证了所提方法的有效性和可行性,为进一步挖掘高风险设备提供了数据支撑。