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AKARI DOI-2019-相似区域的特征提取方法 [复制链接]

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楼主  发表于 2020-12-16 16:49  

FEATURE EXTRACTION METHOD FOR SIMILAR DISTRICTS IN TWO CITIES AND ITS APPLICATION TO OTHER CITIES

In the Case of Tokyo, Kyoto, and Osaka

相似区域的特征提取方法在两个城市及其在其他城市的应用

以东京、京都和大阪为例


AKARI DOI; ATSUSHI TAKIZAWA


KEYWORDS:Spatial data analysis, similarity, feature extraction, enumeration, zero-suppressed binary decision diagram

关键词:空间数据分析,相似性,特征提取,列举法,零压缩二元决策图


本文来自于第十二届空间句法北京会议,文件夹“Urban Morphology”,序号435-1


论文下载链接 http://www.12sssbeijing.com/proceedings/


 


【浙江工业大学理论课作业】

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沙发  发表于 2020-12-16 19:27   楼主

Abstract

摘要


        Cities include districts with various features, and many studies have attempted to grasp the characteristics of cities by clustering districts with similar features. To date, the spatial clustering target has been a single urban space. However, districts with similar characteristics can be observed in different cities. We propose a feature extraction method that generates common feature functions using geographical data, such as population, industry type, use district, and similar districts in two cities. The usefulness of the proposed method was verified by applying the obtained feature function using Tokyo and Kyoto data to another city Osaka as verification data.

       城市包括具有多种特征的区域,许多研究试图通过聚集具有相似特征的区域来把握城市的特征。迄今为止,空间聚类指标一直是单一的城市空间。然而,在不同的城市也可以观察到具有相似特征的地区。本文提出了一种基于人口、行业类型、使用区域及相似地区等地理数据生成共同特征函数的特征提取方法。利用东京和京都的数据作为验证数据,将得到的特征函数应用到另一个城市大阪,验证了该方法的有效性。


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藤椅  发表于 2020-12-16 19:29   楼主

REFERENCES

参考文献

Assuncao, R. M., Neves, M. C., Camara, G. and Da Costa Freitas, C. (2006), ‘Efficient regionalization techniques for socio-economic geographical units using minimum spanning trees’, In International Journal of Geographical Information Science, Vol. 20(7), p.797-811.

Benedikt, M. (1979), ‘To take hold of space: isovists and isovist fields’, In Environment and Planning B, Vol. 6, p.47-65.

Bryant, R. E. (1986), ‘Graph-based algorithms for Boolean function manipulation’, In IEEE Transactions on Computers, C-35(8), p.677-691.

Harris, R., Sleight, P. and Webber, R. (2005), ‘Geodemographics, GIS and Neighbourhood Targeting. Chichester’, John Wiley & Sons.

Kishimoto, C. (2016), ‘Map if Kyoto is Tokyo’, East Press Q.

Law, S. (2017), ‘Defining street-based local area and measuring its effect on house price using a hedonic price approach: The case study of Metropolitan London’, Cities Vol. 60, p.166-179.

Minato, S. (1993), ‘Zero-suppressed BDDs for set manipulation in combinatorial problems’, Proceedings of the 30th international conference on Design automation, p.272-277.

Openshaw, S. (1977), ‘Optimal zoning systems for spatial interaction models’, In Environment and Planning A, Vol. 9, p.169-184.

Openshaw, S. (1994), ‘Neuroclassification of spatial data’, In Hewitson, B. C. and Crane, R. G. eds. Neural Nets: Applications in Geography, Boston: Kluwer Academic Publishers, p.53-70.

Spence, N. A. (1968), ‘A multifactor uniform regionalization of British counties on the basis of employment data for 1961’, In Regional Studies, Vol. 2(1), p.87-104.

Takizawa, A. (2016), ‘Efficient algorithms for enumerating and extracting regional partitions for evacuation centres using zero-suppressed binary decision diagrams’, In Proceedings of Pedestrian and Evacuation Dynamics 2016, p.602-606.


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