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  4. Characterizing patent assignees by their structural positions relative to a field's evolutionary trajectory
 
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Characterizing patent assignees by their structural positions relative to a field's evolutionary trajectory

Journal
Journal of Informetrics
Journal Volume
15
Journal Issue
4
Date Issued
2021
Author(s)
Kuan C.-H
Lin J.-T
DAR-ZEN CHEN  
DOI
10.1016/j.joi.2021.101187
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85110057363&doi=10.1016%2fj.joi.2021.101187&partnerID=40&md5=2ee255e5d7d2c4bb7f78995c9815dbd0
https://scholars.lib.ntu.edu.tw/handle/123456789/598026
Abstract
This study characterizes and classifies the assignees of a technology field's patents through quantitatively determining their structural positions against a trajectory epitomizing the field's knowledge evolution. By considering that these patents’ citation network embodies a knowledge structure for the technology field, and assuming that a series of mainstream (MS) patents constitute the evolutionary trajectory, each non-MS patent is identified to be at one of the following positions: forward and backward reachable (FBR), backward reachable only (BRO), forward reachable only (FRO), and unreachable (UR), based on their reachability with the MS patents. The assignees are then associated with five positioning attributes, which are the shares of their patents at respective positions. With precise definitions using these quantitative attributes, assignees of the technology field are classified into exactly one of the distinctly positioned categories, namely trendsetters, contributors, absorbers, bystanders, and reinforcers, or one of the multiply positioned categories of mixed characteristics. These categories can be geometrically interpreted and the assignees’ positions can be visualized in a three-dimensional positioning space. This study then uses U.S. biochip patents and evolutionary trajectory derived by main path analysis (MPA) to observe how the proposed method works. ? 2021
Subjects
Evolutionary trajectory
Knowledge structure
Main path
Patent assignee
Patent citation network
Structural position
Biochips
Regression analysis
Trajectories
Citation networks
Forward-and-backward
Knowledge evolution
Knowledge structures
Main path analysis
Precise definition
Quantitative attributes
Three-dimensional positioning
Patents and inventions
Type
journal article

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