CAREER: Time-Critical Applications of Nonparametric Regression: Harnessing the Power of Information Technology for Infrastructure Systems Management
CAREER: Time-Critical Applications of Nonparametric Regression: Harnessing the Power of Information Technology for Infrastructure Systems Management
批准号:
9984149
负责人:
Brian Smith
金额:
$21.0万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2000
资助国家:
美国
项目状态:
已结题
起止时间:
2000-09-01 至 2005-08-31
中文摘要
布赖恩湖史密斯大学土木工程系提案编号9984149非参数回归的时间关键应用:利用信息技术的力量进行基础设施管理系统随着对基础设施系统的需求越来越大,土木工程师被要求开发管理系统,以有效利用基础设施的能力。 信息技术的进步使基础设施管理系统能够收集描述系统状态的大量数据。 目前,这些数据用于制定应对当前状况的管理战略。 然而,最好是根据预测的服务需求制定积极主动的战略。非参数回归模型在支持需求预测方面具有很大的潜力。非参数回归的前提是,通过搜索过去经验的数据库,可以找到与系统当前状态相似的案例。 然后,这些过去的案例可以用来预测未来的系统状态。不幸的是,搜索大型数据库的复杂性是如此之大,非参数回归可能无法满足基础设施管理系统的时间要求。 这项工作的目的是解决非参数回归的搜索复杂性,使其成为基础设施管理需求预测的可行工具。研究将集中在数据管理,数据结构和先进的计算方法。 数据管理将被视为试图智能地修剪数据库的记录,而不会使模型的准确性降低到不可接受的程度。将研究数据结构,通过以创新方式对数据进行排序/存储来降低搜索复杂性。 还将探讨先进的计算技术,特别是分布式计算。教育工作的重点将是培养土木工程师有效应用信息技术,这是基础设施管理的一个关键要求。将编制材料,加强土木工程课程中的信息技术教育,学生将组成跨学科小组,将采取步骤吸引和留住代表性不足的群体,并将编制网上教材。
英文摘要
Brian L. SmithUniversity of VirginiaDepartment of Civil EngineeringProposal Number 9984149Time-Critical Applications of Nonparametric Regression: Harnessing the Power of Information Technology for Infrastructure Management SystemsAs greater demands are placed on infrastructure systems, civil engineers are being called upon to develop management systems to enable the efficient use of infrastructure capacity. Advances in information technology allow infrastructure management systems to collect large quantities of data describing the state of the system. Currently, this data is used to develop management strategies that react to current conditions. However, it is desirable to develop proactive strategies based on forecasted demand for service. Nonparametric regression models have high potential to support demand forecasting. The premise of nonparametric regression is that by searching a database of past experiences, one can find cases that are similar to the current state of the system. Then, these past cases can be used to predict the future system state. Unfortunately, the complexity of searching a large database is so great that nonparametric regression may be unable to meet the time requirements of infrastructure management systems. The purpose of this effort is to address the search complexity of nonparametric regression, making it a viable tool for infrastructure management demand forecasting.The research will focus on data management, data structure, and advanced computing approaches. Data management will be considered to attempt to intelligently prune records of the database without unacceptably degrading the accuracy of the model. Data structures will be investigated that will reduce search complexity through sorting/storing the data in innovative ways. Advanced computing technologies, particularly distributed computing, will also be explored. The education effort will focus on preparing civil engineers to effectively apply information technology, a critical infrastructure management requirement. Materials will be developed to strengthen information technology education in the civil engineering curriculum, students will work on interdisciplinary teams, steps will be taken to attract and retain underrepresented groups, and web-based educational materials will be developed.
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