Capturing what human eyes perceive: A visual hierarchy generation approach to emulating saliency-based visual attention for grid-like urban street networks

2020 ◽  
Vol 80 ◽  
pp. 101454 ◽  
Author(s):  
Wenjie Zhen ◽  
Lin Yang ◽  
Mei-Po Kwan ◽  
Zejun Zuo ◽  
Bo Wan ◽  
...  
2014 ◽  
Vol 18 (5) ◽  
pp. 1539-1547 ◽  
Author(s):  
Dongfang Ma ◽  
Dianhai Wang ◽  
Yiming Bie ◽  
Sheng Jin ◽  
Zhenyu Mei

Author(s):  
Eric E. Poehler

Chapter 2 explores the present understanding of Pompeii’s evolution by disassembling the apparent patchwork of grids across the city and reconsiders the presumed awkwardness in their adhesion. To do this, the traditional tools of formal analysis—street alignments and block shapes—are employed with and critiqued by the stratigraphic evidence recovered in the last three decades of excavation below the 79 CE levels. The result is an outline of the development of Pompeii’s urban form as a series of street networks: from the archaic age, through the period of the “hiatus” of the fifth and fourth centuries BCE, to a reorganization of the city’s space so profound that it can genuinely be considered a refoundation, and finally to the adjustments of a refounded city in the Colonial, Augustan, and post-earthquake(s) periods.


2019 ◽  
Vol 15 (2) ◽  
pp. 1041-1060
Author(s):  
Dongfang Ma ◽  
Bowen Sheng ◽  
Dianhai Wang ◽  
Sheng Jin ◽  
Xiang Song
Keyword(s):  

Cities ◽  
2020 ◽  
Vol 107 ◽  
pp. 102916
Author(s):  
Julia Coutinho Amaral ◽  
Claudio B. Cunha

Author(s):  
Zhengyao Yu ◽  
Vikash V. Gayah

Urban street networks are subject to a variety of random disruptions. The impact of movement restrictions (e.g., one-way or left-turn restrictions) on the ability of a network to overcome these disruptions—that is, its resilience—has not been thoroughly studied. To address this gap, this paper investigates the resilience of one-way and two-way square grid street networks with and without left turns under light traffic conditions. Networks are studied using a simplified routing algorithm that can be examined analytically and a microsimulation that describes detailed vehicle dynamics. In the simplified method, routing choices are enumerated for all possible origin–destination (OD) combinations to identify how the removal of a link affects operations, both when knowledge of the disruption is and is not available at the vehicle’s origin. Disruptions on two-way networks that allow left turns tend to have little impact on travel distances because of the availability of multiple shortest paths between OD pairs and the flexibility in route modification. Two-way networks that restrict left turns at intersections only have a single shortest-distance path between any OD pair and thus experience larger increases in travel distance, even when the disruption is known ahead of time. One-way networks sometimes have multiple shortest-distance routes and thus travel distances increase less than two-way network without left turns when links are disrupted. These results reveal a clear tradeoff between improved efficiency and reduced resilience for networks that have movement restrictions, and can be used as a basis to study network resilience under more congested scenarios and in more realistic network structures.


2013 ◽  
Vol 40 (6) ◽  
pp. 1071-1086 ◽  
Author(s):  
Emanuele Strano ◽  
Matheus Viana ◽  
Luciano da Fontoura Costa ◽  
Alessio Cardillo ◽  
Sergio Porta ◽  
...  

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