法院判决信息化的主体领域

IF 0.2 Q3 LAW
S. Polyakov, I. Gilev
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引用次数: 1

摘要

简介:我们已经创建了一个名为“LaserIP-GPK-2020”的信息技术支持计划,旨在根据俄罗斯联邦民事诉讼法的规则在普通诉讼中做出合理的法院判决。在这个程序的帮助下,我们在论文中展示了个人执法过程的复杂性,以及软件可以提供的帮助来克服这种复杂性。本文展示了我们创建的信息系统的主题领域,概述了进一步增强旨在促进执法的软件的方法,并挑战了关于机器人法官的神话。目的:在执法人员拥有裁量权的情况下,根据执法行动的类型,确定可能开发的软件类型;确定执法行动正规化的方向,以及逐步将其中一些转移到人工智能的可能性。方法:在将执法过程转化为信息技术语言时,采用普遍的辩证唯物主义方法;分析和综合执法过程,正式的法律方法-将法律和法学对执法的要求转化为法官和案件当事人的软件命令;面向对象的建模方法;采用面向对象的编程方法,采用关系型方法进行数据库设计。结果:“Laser-IPGPK-2020”计算机程序包含一系列执法行动及其执行规则,其多样性和复杂性超出了大多数执法人员的能力。这个项目的目的是为了防止由于人的能力有限而导致执法失误,因为人在保留大量执法规则方面的知识,并避免每个法官单独在案件中作出合理裁决所需的时间。结论:在解决法律案件时,执法实践中应用的特定IT解决方案的选择和开发是通过对执法过程的分析来确定的,这是该计划的主题领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
THE SUBJECT AREA OF INFORMATIZATION OF COURT DECISIONS
Introduction: we have created an information technology support program, named ‘LaserIP-GPK-2020’, designed to provide assistance in making reasoned court decisions according to the rules of the Civil Procedure Code of the Russian Federation in ordinary proceedings. With the help of this program, we demonstrate in the paper the complexity of the law enforcement process for a person and the assistance that software can provide to overcome this complexity. The paper shows the subject area of the information system created by us, outlines the ways of further enhancement of software intended to facilitate law enforcement, and challenges the myths about the robot judge. Purpose: to determine the possible types of software to be developed in accordance with the types of law enforcement operations, provided that the discretion function remains with law enforcement officers; to determine the directions of the formalization of law enforcement operations and the possibilities of gradual transfer of some of them to artificial intelligence. Methods: the universal dialectical-materialistic method, employed when converting the law enforcement process into the language of information technology; analysis and synthesis of the law enforcement process, the formal-legal method – for converting the requirements of law and legal science to law enforcement into software commands for the judge and the parties to the case; the object-oriented approach to modeling; the object-oriented programming methodology, a relational approach to database design. Results: the ‘Laser-IPGPK-2020’ computer program contains a sequence of law enforcement operations and rules for their execution, the multiplicity and complexity of which exceeds the capabilities of most law enforcement officers. This program is designed to prevent law enforcement errors resulting from the limited human capabilities with regard to retaining knowledge of the multitude of rules of law enforcement operations, and to obviate the expenditure of time required for each individual judge to solely produce a reasoned decision in a case. Conclusion: the selection and development of particular IT solutions to be applied in law enforcement practice when solving legal cases are determined by the analysis of the law enforcement process, which is the subject area of the program.
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50.00%
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