We applied Dirac distribution, Bose-Einstein distribution, and occasionally Boltzmann-Gibbs distribution in order to determine which is optimal for income distribution on a large pool of countries. The best fit to the data was observed in the case of Fermi-Dirac distribution, for which the coefficient of determination showed the best goodness of fit to the data. Using this distribution for data (spun throughout more years), we obtained the underlying critical parameters of annual income distribution such as chemical potential and temperature. The next step was to explore the evolution of income using economic analogues to chemical potential and temperature. Using as background the analogy made by Yakovenko between temperature from thermodynamic systems and nominal income from Economics, we found other analogies that would allow further analysis and explanation of income.
翻译:我们运用了Dirac分布、Bose-Einstein分布,有时还采用Boltzmann-Gibbs分布,以确定哪一种最适合在众多国家中进行收入分配。在Fermi-Dirac分布中,观察到的数据最适合于数据。在Fermi-Dirac分布中,确定系数表明最适合数据。利用这种数据分布(多年以来的SPun),我们获得了诸如化学潜力和温度等年度收入分配的关键参数。下一步是利用经济类比来探索收入的演变情况,将化学潜力和温度进行比较。我们以Yakovenko在热动力系统温度与经济名义收入之间所作的类比为背景,发现了其他可进一步分析和解释收入的类比。