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Validation of Urban Vehicle Classification Sampling Methodology

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Author :
Release : 2005
Genre : Sampling (Statistics)
Kind : eBook
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Book Synopsis Validation of Urban Vehicle Classification Sampling Methodology by :

Download or read book Validation of Urban Vehicle Classification Sampling Methodology written by . This book was released on 2005. Available in PDF, EPUB and Kindle. Book excerpt: The Mobility Analysis Section of the CDOT Division of Transportation Development (DTD) developed this study to determine whether the cluster count method developed by CDOT is statistically reliable for estimating vehicle classification on urban roadways with average daily traffic volumes exceeding 15,000 vehicles per day. Specifically, CDOT needed to assess whether or not the percentages of vehicles in the 13 FHWA vehicle classifications estimated by the cluster count method differ significantly from expected percentages obtained by 24-hour counts. Since vehicle classification is expensive to perform by manual observation over long periods of time, a statistically reliable method of estimating vehicle type percentages on urban roadways using a less time-consuming method is desirable. The study team utilized the chi-square statistical test to evaluate the similarity between vehicle classifications collected using the cluster count method and 24-hour vehicle counts collected using other data collection methods. Vehicle classification data were collected at 12 sites around Denver, Colorado that represented different roadway classes. The statistical tests between the data collected using the cluster count method and the 24-hour counts revealed that the current cluster count method varied beyond an acceptable statistical similarity to the 24-hour counts. Upon reaching this conclusion, the study panel simulated various changes to the short duration count methodology in an effort to identify the greatest improvement in statistical accuracy. As a result of this study, the recommended short duration vehicle classification methodology requires vehicle counts to be performed for 15 minutes every hour for a 24-hour period. This method exhibits strong statistical similarity to the 24-hour classification counts for all roadway classes and study sites included in this analysis. This collection method is statistically accurate, easy for field personnel to understand and collect, and is about onethird of the cost of a manual 24-hour count. The Mobility Analysis Section of DTD has developed a guidebook on the recommended short duration count methodology that will be available to CDOT staff, data collectors, consultants, and other public agencies. This guidebook outlines how to collect the short duration classification data, process and manage the data, and perform quality control checks.

Sampling Techniques for the Collection of Vehicle Classification Data

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Author :
Release : 1985
Genre : Motor vehicles
Kind : eBook
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Book Synopsis Sampling Techniques for the Collection of Vehicle Classification Data by : Jerry G. Pigman

Download or read book Sampling Techniques for the Collection of Vehicle Classification Data written by Jerry G. Pigman. This book was released on 1985. Available in PDF, EPUB and Kindle. Book excerpt:

Highway Safety Literature

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Author :
Release : 1980
Genre : Highway research
Kind : eBook
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Book Synopsis Highway Safety Literature by :

Download or read book Highway Safety Literature written by . This book was released on 1980. Available in PDF, EPUB and Kindle. Book excerpt:

Validating the Performance of Vehicle Classification Stations

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Author :
Release : 2012
Genre : Motor vehicles
Kind : eBook
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Book Synopsis Validating the Performance of Vehicle Classification Stations by : Benjamin André Coifman

Download or read book Validating the Performance of Vehicle Classification Stations written by Benjamin André Coifman. This book was released on 2012. Available in PDF, EPUB and Kindle. Book excerpt: Vehicle classification is used in many transportation applications, e.g., infrastructure management and planning. Typical of most developed countries, every state in the US maintains a network of vehicle classification stations to explicitly sort vehicles into several classes based on observable features, e.g., length, number of axles, axle spacing, etc. Periodic performance monitoring is necessary to ensure the quality of collected data; however, such testing has been prohibitively labor intensive to do as thoroughly as needed. To address these challenges, this study examined three interrelated facets of vehicle classification performance monitoring. First, we manually evaluate the performance of vehicle classification stations on a per-vehicle basis, second we develop a portable LIDAR (light detection and ranging) based vehicle classification system that can be rapidly deployed, and third we use the LIDAR based system to automate the manual validation done in the first part using the tools from the second part. In the first part we examined over 18,000 vehicles, at several stations and found good performance overall, but performance for trucks was far worse than passenger vehicles. About a third of the errors were fixed by modifying the classification decision tree, the remaining two thirds of the errors are unavoidable because different classes have overlapping axle spacings or lengths (e.g., passenger vehicles and trucks, or commuter cars and motorcycles). All subsequent uses of the classification data must accommodate this unavoidable blurring. Next, we develop a side-fire LIDAR based classification system that does not require any calibration in the field. Finally, we develop a process to use the LIDAR system (or another temporary vehicle classification system) deployed concurrent to a permanent classification station to semi-automate the manual validation. The automated process does the bulk of the work, typically taking a user only a few minutes to validate all of the exceptions from all lanes over an hour of data. We found wide variance in performance from one station to the next. Since these errors are a function of the specific station, there would be benefit in the short term to leverage the LIDAR based system to evaluate the performance of many other classification stations to catch systematic errors that bias classification performance.

Guide to Urban Traffic Volume Counting

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Author :
Release : 1981
Genre : Sampling (Statistics)
Kind : eBook
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Book Synopsis Guide to Urban Traffic Volume Counting by : R. A. Ferlis

Download or read book Guide to Urban Traffic Volume Counting written by R. A. Ferlis. This book was released on 1981. Available in PDF, EPUB and Kindle. Book excerpt: This report presents methods by which urbanized areas can develop and implement integrated traffic data counting programs to serve the volume data needs of all their agencies. The procedures presented complement the techniques for measuring vehicle type and occupancy presented in the Guide for Estimating Urban Vehicle Classification and Occupancy. Methods for estimating volume at a single location, volume across a particular cordonline or cutline, vehicle-miles travelled within a corridor, and regional vehicle-miles travelled are presented. Of particular value to transportation technical staffs in urban areas, these techniques permit collection of volume data at pre-determined levels of precision, and in a cost-effective manner.

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