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Improvements to Rapfish: a rapid evaluation technique for fisheries integrating ecological and human dimensions

机译:改进R鱼:一种结合生态和人文因素的渔业快速评估技术

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This paper reports recent developments in Rapfish, a normative, scalable and flexible rapid appraisal technique that integrates both ecological and human dimensions to evaluate the status of fisheries in reference to a norm or goal. Appraisal status targets may be sustainability, compliance with a standard (such as the UN code of conduct for responsible fisheries) or the degree of progress in meeting some other goal or target. The method combines semi-quantitative (e.g. ecological) and qualitative (e.g. social) data via multiple evaluation fields, each of which is assessed through scores assigned to six to 12 attributes or indicators: the scoring method allows user flexibility to adopt a wide range of utility relationships. For assessing sustainability, six evaluation fields have been developed: ecological, technological, economic, social, ethical and institutional. Each field can be assessed directly with a set of scored attributes, or several of the fields can be dealt with in greater detail using nested subfields that themselves comprise multidimensional Rapfish assessments (e.g. the hierarchical institutional field encompasses both governance and management, including a detailed analysis of legality). The user has the choice of including all or only some of the available sustainability fields. For the attributes themselves, there will rarely be quantitative data, but scoring allows these items to be estimated. Indeed, within a normative framework, one important advantage with Rapfish is transparency of the rigour, quality and replicability of the scores. The Rapfish technique employs a constrained multidimensional ordination that is scaled to situate data points within evaluation space. Within each evaluation field, results may be presented as a two-dimensional plot or in a one-dimensional rank order. Uncertainty is expressed through the probability distribution of Monte-Carlo simulations that use the c.l. on each original observation. Overall results of the multidisciplinary analysis may be shown using kite diagrams that compare different locations, time periods (including future projections) and management scenarios, which make policy trade-offs explicit. These enhancements are now available in the R programming language and on an open website, where users can run Rapfish analyses by downloading the software or uploading their data to a user interface
机译:本文报告了Rapfish的最新发展,Rapfish是一种规范,可扩展且灵活的快速评估技术,该技术结合了生态和人的方面来根据准则或目标评估渔业状况。评估状态目标可能是可持续性,是否符合标准(例如联合国负责任渔业行为守则)或达到某些其他目标或目标的进度。该方法通过多个评估字段将半定量(例如生态)和定性(例如社会)数据进行组合,每个字段都通过分配给6到12个属性或指标的分数进行评估:评分方法使用户可以灵活地采用多种效用关系。为了评估可持续性,已经开发了六个评估领域:生态,技术,经济,社会,道德和制度。可以直接使用一组计分属性直接评估每个字段,或者可以使用本身包含多维Rapfish评估的嵌套子字段来更详细地处理几个字段(例如,分层机构字段同时包含治理和管理,包括详细分析)合法性)。用户可以选择包括所有或仅某些可用的可持续性字段。对于属性本身,很少会有定量数据,但评分可以估算这些项目。确实,在规范性框架内,Rapfish的一个重要优势是评分的严格性,质量和可复制性透明。 Rapfish技术采用了受约束的多维排序,该缩放被缩放以将数据点放置在评估空间内。在每个评估字段中,结果可以呈现为二维图或一维等级顺序。不确定性是通过使用c.l.的蒙特卡洛模拟的概率分布来表示的。在每个原始观察上。可以使用风筝图显示多学科分析的总体结果,该风筝图比较不同的位置,时间段(包括未来的预测)和管理方案,这使政策的权衡变得很明确。这些增强功能现已以R编程语言和开放网站提供,用户可以在其中通过下载软件或将其数据上传到用户界面来运行Rapfish分析。

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