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A Rice Growth Models (RGM) System by Object-Oriented Programming with Visual C++

机译:用Visual C ++进行面向对象编程的水稻生长模型(RGM)系统

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Object-oriented programming divides the crop production into subsystems and simulates their behaviors. Many classes were designed to simulate the behaviors of different parts or different physiological processes in crop production system. At the same time, many classes have to be employed for bettering user' s interface. But how to manage these classes on a higher level to cooperate them into a perfect system is another problem to study. The Rice Growth Models (RGM) system represents an effort to define and implement a framework to manage these classes. In RGM system, the classes were organized into the model-document-view architecture to separate the domain models, data management and user interface. A single document with multiple views interface frame window was adopted in RGM. In the architectures, the simulation models only exchange data with documents while documents act as intermediacies between simulation models and interfaces. Views get data from documents and show the results to users. The classes for the different functions can be grouped into different architectures. Different architectures communicate with each other through documents. The classes for the different functions can be grouped into different architectures. By using the architecture, communication between classes is more efficient. Modeler can add classes in architectures or other architectures to extend the system without having to change system structure, which is useful for construction and maintenance of agricultural system models.
机译:面向对象的程序设计将农作物生产分为子系统并模拟其行为。设计了许多类来模拟作物生产系统中不同部分或不同生理过程的行为。同时,必须采用许多类来改善用户界面。但是,如何在更高层次上管理这些班级以使其与一个完善的系统配合是另一个需要研究的问题。稻米生长模型(RGM)系统代表着努力定义和实施管理这些分类的框架。在RGM系统中,这些类被组织到模型-文档-视图体系结构中,以将域模型,数据管理和用户界面分开。 RGM中采用了具有多视图界面框架窗口的单个文档。在体系结构中,仿真模型仅与文档交换数据,而文档则充当仿真模型和界面之间的中介。视图从文档中获取数据并将结果显示给用户。不同功能的类可以分为不同的体系结构。不同的体系结构通过文档相互通信。不同功能的类可以分为不同的体系结构。通过使用该体系结构,类之间的通信更加有效。 Modeler可以在体系结构或其他体系结构中添加类以扩展系统,而无需更改系统结构,这对于构建和维护农业系统模型非常有用。

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