Forecasting Fuel Consumption Requirements for the Air Force Flying Hour Program Using Pooled Time Series Analysis - Thomas W Brown - Bøker - Biblioscholar - 9781288414710 - 7. desember 2012
Ved uoverensstemmelse mellom cover og tittel gjelder tittel

Forecasting Fuel Consumption Requirements for the Air Force Flying Hour Program Using Pooled Time Series Analysis

Pris
NOK 219

Bestillingsvarer

Forventes levert 16. - 30. sep
Få varsel om nye utgivelser fra Thomas W Brown
Legg til iMusic ønskeliste
eller

Ikke vurdert ennå

Publisher Marketing: The United States Coast Guard uses pooled time series analysis to develop a ship and aviation fuel requirement forecasting model. Given the volatility of aviation fuel prices and the USAF dependency on foreign oil, alternative fuel sources are a serious consideration and require forecasting models when conducting comparison studies. This research uses the Coast Guard's methodology to develop an Air Force aviation fuel requirements model for the Air Force Cost Analysis Agency (AFCAA). By pooling 1,442 historical consumption time series data points, two regression models are developed that predict aviation fuel requirements in gallons. The remaining 356 randomly excluded data points are then used to validate the two regression models. The research shows that 100 percent of the least squares estimated gallons consumed fell within a 95 percent confidence interval for the single and the sub macro-level models. However, the single and sub macro-level models are fundamentally flawed as both fail the underlying linear regression assumptions of normality, constant variance, and independence. Although the research produces two models that predict aviation fuel requirements well, the application of either the single or sub macro-level models are discourage without proper understanding of the underlying statistics provided.

Media Bøker     Pocketbok   (Bok med mykt omslag og limt rygg)
Utgitt 7. desember 2012
ISBN13 9781288414710
Utgivere Biblioscholar
Antall sider 64
Mål 189 × 246 × 3 mm   ·   99 g

Mer med Thomas W Brown

Vis alle