[1] LEE J, CHOI B Y, JUNG E. Metapopulation model using commuting flow for national spread of the 2009 H1N1 influenza virus in the Republic of Korea[J]. Journal of Theoretical Biology, 2018, 454: 320-329.
[2] BARRIOS E, LEE S, VASILIEVA O. Assessing the effects of daily commuting in two- patch dengue dynamics: A case study of Cali, Colombia[J]. Journal of Theoretical Biology, 2018, 453: 14-39.
[3] 新华网. 有序推动复工复产, 有力保障稳岗就业[EB/ OL]. (2020-02-20)[2020-2-20]. https://news.ifeng.com/ c/7uD9fDSzcuY. [XINHUANET. Promote the resumption of work and production in an orderly manner to ensure stable employment[EB/OL]. (2020-02-20) [2020-2-20]. https://news.ifeng.com/c/7uD9fDSzcuY.]
[4] 褚浩然, 杨晓光.“错峰出行”制度的作用机理及交通可行性研究: 以上海为例[J]. 交通运输系统工程与信息, 2005, 5(3): 77-81. [ZHU H R, YANG X G. Effect mechanism of stagger shifts and its traffic feasibility: A case study of Shanghai[J]. Journal of Transportation Systems Engineering and Information Technology, 2005, 5(3): 77-81.]
[5] 周乐. 对城市交通规划中职住平衡理念的再思考[J]. 城市交通, 2018, 16(3): 70-75. [ZHOU L. Rethinking on job- housing balance theory in urban transportation planning[J]. Urban Transport of China, 2018, 16(3): 70- 75.]
[6] SMALL K A, SONG S. "Wasteful" commuting: A resolution[J]. Journal of Political Economy, 1992, 100 (4): 888-898.
[7] HUANG L, LI J. Applicability of staggered work hours for urban traffic: Case of Guangzhou[M]//ICTE 2011, 2011: 404-409.
[8] WU M, HAN S, SUN M, et al. How the distance between regional and human mobility behavior affect the epidemic spreading[J]. Physica A: Statistical Mechanics and its Applications, 2018, 492: 1823-1830. |