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Dynamics of innovation in an 'open source' collaboration environment: lurking, laboring, and launching FLOSS projects on SourceForge

机译:“开源”协作环境中的创新动力:在SourceForge上潜伏,工作和启动FLOSS项目

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A systems analysis perspective is adopted to examine the critical properties of the Free/Libre/Open Source Software (FLOSS) mode of innovation, as reflected on the SourceForge platform (SF.net). This approach re-scales March's (1991) framework and applies it to characterize the "innovation system" of a "distributed organization" of interacting agents in a virtual collaboration environment, rather than to innovation within a firm. March (1991) views the process of innovation at the organizational level as the coupling of sub-processes of exploration and exploitation. Correspondingly, the innovation system of the virtual collaboration environment represented by SF.net is an emergent property of two "coupled" processes: one involves the interactions among agents searching the locale for information and knowledge resources to use in designing novel software products (i.e., exploration), and the other involves the mobilization of individuals' capabilities for application in the software development projects that become established on the platform (i.e., exploitation). The micro-dynamics of this system are studied empirically by constructing transition probability matrices representing the movements of 222,835 SF.net users among seven different activity states, which range from "lurking" (not contributing or contributing to projects without becoming a member) to "laboring" (joining one or more projects as members), and to "launching" (founding one or more projects) within each successive 6-month interval. The estimated probabilities are found to form first-order Markov chains describing ergodic processes. This makes it possible the computation of the equilibrium distribution of agents among the states, thereby suppressing transient effects and revealing persisting patterns of project joining and project launching. The latter show the FLOSS innovation process on SF.net to be highly dissipative: a very large proportion of the registered "developers" fail to become even minimally active on the platform. There is nevertheless an active core of mobile project joiners, and a (still smaller) core of project founders who persist in creating new projects. The structure of these groups' interactions (as displayed within the 3-year period examined) is investigated in detail, and it is shown that it would be sufficient to sustain both the exploration and exploitation phases of the platform's global dynamics.
机译:采用系统分析的观点来检查自由/自由/开源软件(FLOSS)创新模式的关键属性,这反映在SourceForge平台(SF.net)上。这种方法重新调整了March(1991)的框架,并将其应用于表征虚拟协作环境中交互代理的“分布式组织”的“创新系统”,而不是公司内部的创新。 March(1991)将组织层面的创新过程视为勘探和开发子过程的耦合。相应地,由SF.net表示的虚拟协作环境的创新系统是两个“耦合”过程的新兴属性:一个涉及代理之间的交互,这些交互在语言环境中搜索信息和知识资源以用于设计新颖的软件产品(即,探索),另一个涉及调动个人在平台上建立的软件开发项目中的应用能力(即开发)。通过构建表示222,835个SF.net用户在七个不同活动状态之间的运动的转移概率矩阵,对该系统的微观动力学进行了经验研究,范围从“潜伏”(对项目没有贡献或没有成为成员就没有贡献或贡献)到“劳动”(加入一个或多个项目作为成员),并在每个连续的6个月间隔内“启动”(建立一个或多个项目)。发现估计的概率形成描述遍历过程的一阶马尔可夫链。这使得计算状态之间的主体平衡分布成为可能,从而抑制了瞬态效应并揭示了项目加入和项目启动的持久模式。后者表明SF.net上的FLOSS创新过程具有很高的耗散性:很大一部分已注册的“开发人员”未能在该平台上变得非常活跃。但是,移动项目加入者有一个活跃的核心,而坚持创建新项目的项目创建者的核心(仍然较小)。详细研究了这些群体之间的相互作用的结构(如在检查的3年内显示的那样),结果表明,足以维持平台全球动态的探索和开发阶段。

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