住宅开发材料选址决策谈判的协议选项

C. Utomo, Y. Rahmawati
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引用次数: 4

摘要

不同的房屋发展利益相关者需要合作和协作来执行各种项目活动。住房开发需要基础设施建设,其中准备的砂土材料路基高达±20万m3。目标是找到一个协议选择和联盟的模型,验证最适合材料位置的算法,并确定所提议的协议选择的实现程度。本研究提供了一个结构化的方法,可以导致系统的支持系统和自动协商的住房开发过程中的决策。,小组决策技术的协议选项被用于确定执行项目解决方案功能的备选解决方案的相对价值。将基于满足选项的层次分析法应用于决策过程和基于博弈论的联盟组建代理系统。它分为确定决策偏好的两个阶段和由四个步骤组成的决策过程。具体步骤为:构建决策层次,进行判断与综合,确定收益最优,分析所有决策者的最优选择。该模型允许每个决策者单独选择其联盟。这将提高战略决策的价值。所有的解决方案都是由一个以上的决策者和联盟选择的,其中所有的决策者都同意结果。它成为住宅开发材料的可能地点。支持模型支持群体决策中的协商过程。决策算法基于合作博弈论来制定协议选项和联盟形成。在这一领域也进行了类似的研究,但据作者所知,这项研究是第一次应用基于可取和可观价值的满足。,结果仅限于协作决策的第一轮协商。协商过程需要决策者偏好之间的权衡算法。未来的研究将继续致力于多属性决策,特别是神经网络应用和价值函数等用户偏好模型的推导过程,以及通过对备选方案特征的定性描述建立专家定量数据。这就需要开发权衡算法来实时分析技术方案的价值。支持模型可以扩展到自动协商和在住房开发的各个阶段的不同战略决策。,联盟的满意算法将使所有利益相关者满意。这将减少任何潜在的冲突。价值决策、群体决策与协同支持的结合。应用协议选项的联盟形成来选择最合适的材料位置。它是基于满足博弈论而不是优化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Agreement options for negotiation on material location decision of housing development
Different housing development stakeholders need to cooperate and collaborate to perform various project activities. Housing development requires infrastructure development, which includes preparation of sand material embankment as much as ± 200,000 m3. The objectives are to find a model for agreement options and coalition, to validate the algorithms of the best fit for material locations and to determine how much the proposed agreement option was achieved. This study provides a structured methodology that can lead to systematic support system and automated negotiation for decision-making on housing development process.,Agreement option on group decision techniques was applied to determine the relative value of the alternative solutions for performing the function of project solutions. Analytical hierarchy process based on satisficing option was applied for decision process and game theory-based agent system for coalition formation. It is conducted in two stages that determine the decision preference and decision process consisting of four steps. The steps are constructing decision hierarchy, making judgment and synthesis, determining payoff optimum and analyzing the best fit option for all decision-makers.,The proposed model enables each decision-maker to select individually its coalition. It will improve the value of strategic decision. All solutions are chosen by more than one decision-maker and coalitions, where all decision-makers agree with the result. It becomes possible location for the material of a housing development. A support model enables negotiation process in group decision. Decision algorithms are based on the cooperative game theory to develop the agreement options and coalition formation. Similar research studies were carried out in this area, but this research is – to the knowledge of the authors – the first to apply the satisficing of value-based on desirable and considerable.,The result is limited to the first-round negotiation of collaborative decision. A trade-off algorithm among decision-maker preference is needed for negotiation process. Future research is to continue working on multi-attribute decision-making, specifically on the process of eliciting user preference models such as neural network application and value function, and on establishing expert quantitative data from qualitative description of the feature of the alternative solution. It will need the development of trade-off algorithms to analyze value of technical solution in real time.,The support model can be extended to an automated negotiation and in different strategic decision on all stages of housing development.,The satisficing algorithm of the coalition will satisfy all stakeholders. This will reduce any potential conflict.,Combination of value-based decision, group decision and collaborative support. Application of coalition formation for agreement options is used to select the best fit material location. It is based on satisficing game theory rather than optimization.
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