For the first time, we found that cavitation treatment of water increases the number of ortho-H<sub>2</sub>O isomers by 12% - 15%, which was confirmed in experiments on a tomograph. From this, it was sugge...For the first time, we found that cavitation treatment of water increases the number of ortho-H<sub>2</sub>O isomers by 12% - 15%, which was confirmed in experiments on a tomograph. From this, it was suggested that the O/P ratio is a key factor in reducing the viscosity of water. The most significant decrease in the viscosity of an aqueous suspension of hemoglobin molecules with an increase in its concentration was measured earlier in the vicinity of a temperature of 37°C. The mechanism of the observed phenomena is discussed.展开更多
为了改善正交频分复用(orthogonal frequency division multiplexing,OFDM)系统的峰均功率比(peak-to-average power ratio,PAPR)性能,提出了一种基于动态功率阈值的低复杂度部分传输序列(partial transmit sequences,PTS)方法。在新的...为了改善正交频分复用(orthogonal frequency division multiplexing,OFDM)系统的峰均功率比(peak-to-average power ratio,PAPR)性能,提出了一种基于动态功率阈值的低复杂度部分传输序列(partial transmit sequences,PTS)方法。在新的PTS方法中,引入了基于功率的判别函数,并给出了一种基于功率合理选择阈值的方法。在选取最小的PAPR值进行传输时,只对Pn大于等于阈值的样本信号进行峰值功率的计算。与传统的PTS算法相比,本文提出的算法在保证PAPR性能和误码率的情况下,能够更有效地降低计算复杂度。展开更多
文摘For the first time, we found that cavitation treatment of water increases the number of ortho-H<sub>2</sub>O isomers by 12% - 15%, which was confirmed in experiments on a tomograph. From this, it was suggested that the O/P ratio is a key factor in reducing the viscosity of water. The most significant decrease in the viscosity of an aqueous suspension of hemoglobin molecules with an increase in its concentration was measured earlier in the vicinity of a temperature of 37°C. The mechanism of the observed phenomena is discussed.
文摘为了改善正交频分复用(orthogonal frequency division multiplexing,OFDM)系统的峰均功率比(peak-to-average power ratio,PAPR)性能,提出了一种基于动态功率阈值的低复杂度部分传输序列(partial transmit sequences,PTS)方法。在新的PTS方法中,引入了基于功率的判别函数,并给出了一种基于功率合理选择阈值的方法。在选取最小的PAPR值进行传输时,只对Pn大于等于阈值的样本信号进行峰值功率的计算。与传统的PTS算法相比,本文提出的算法在保证PAPR性能和误码率的情况下,能够更有效地降低计算复杂度。