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首页> 外文期刊>Ecological Modelling >Developing and validating a multi-level ecological model of eastern Baltic cod (Gadus morhua) in the Bornholm Basin – A case for domain-specific languages
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Developing and validating a multi-level ecological model of eastern Baltic cod (Gadus morhua) in the Bornholm Basin – A case for domain-specific languages

机译:在博恩霍尔姆盆地中开发和验证东部波罗科鳕鱼的多级生态模型(歌舞岛) - 一种特定于域的语言的案例

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摘要

Abstract Recent changes in environmental and ecological conditions are a major reason that established stock assessment macro-models no longer provide reliable estimates on the stock status of eastern Baltic cod (Gadus morhua). To account for a complex ecological system, an individual-based modelling approach is needed that turns the attention from the overall population to the individual fish, its metabolic processes, behaviour, and interaction with environmental conditions. The multi-level rule-based modelling language ML-Rules was used to develop the first iteration of an individual-based model. The different stratification layers of the estuarine environment are modelled as explicit entities with varying properties and are populated by individual cod and its prey. The cod model focuses on growth and mortality dependent on abiotic factors and behaviour within the stratified environment of the Bornholm Basin. Despite the complexity of the formalised interactions, the resulting model specification is succinct and compact. Its structure and declarative nature facilitates reuse and subsequent extension. To allow easy replication of simulation experiments, we used the simulation experiment specification language SESSL for calibration and validation. The extendibility of the model and replicability of simulation experiments, as provided by the domain specific languages ML-Rules and SESSL respectively, will be key assets in future research, as the model provides a first, but essential, step toward studying the impact of specific environmental changes and certain behaviour pattern on the cod population in the Bornholm Basin. ]]>
机译:<![cdata [ 抽象 环境和生态条件的最新变化是建立股票评估宏型的主要原因,不再为东部波罗的海的股票现状提供可靠的估计cod( gadus morhua )。要考虑到复杂的生态系统,需要一种基于个性的建模方法,使将注意力从整体人口转移到各个鱼类,其代谢过程,行为以及与环境条件的相互作用。 < CE:简单段id =“spar0075”视图=“全部”>基于多级规则的建模语言ML规则用于开发基于各个模型的第一次迭代。雌曲线环境的不同分层层被建模为具有不同性质的显式实体,并被单独的鳕鱼及其猎物填充。 COD模型依赖于博恩霍尔姆盆地分层环境中的生长和死亡率依赖于非生物因素和行为。 尽管如此正式相互作用的复杂性,所产生的模型规格是简洁和紧凑的。其结构和陈述性质有助于重用和随后的延期。为了允许轻松复制模拟实验,我们使用了模拟实验规范语言Sessl进行校准和验证。域特定语言和Sessl的仿真实验的模型和可复制性的可扩展性分别是未来研究中的关键资产,因为该模型提供了第一个,但必要的迈向研究特定的影响博恩霍尔斯盆地COD人口的环境变化和某些行为模式。 ]]>

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