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Human errors, as well as deliberate sabotage, pose a considerable danger to passengers riding on the modern railways and have created disastrous consequences. To protect civilians against both intentional and unintentional threats, rail transportation has become increasingly automated. Railway Safety, Reliability, and Security: Technologies and Systems Engineering provides engineering students and professionals with a collection of state-of-the-art methodological and technological notions to support the development and certification of ‘real-time safety-critical’ railway control systems, as well as the protection of rail transportation infrastructures.
Contents: (1) Intro.; (2) What is High Speed Rail (HSR)?; (3) HSR Options; (4) Components of a HSR System: Conventional HSR; Track; Signal and Commun. Networks; Magnetic Levitation; (5) HSR In: Japan; France; Germany; Spain; China; (6) Background of Intercity Passenger Rail in the U.S.; (7) Previous Efforts in the U.S.; (8) Recent Congress. Initiatives to Promote HSR; (9) Potential Benefits: Alleviating Highway and Airport Congestion; Alleviating Pollution and Reducing Energy Consumption by the Transport. Sector; Promoting Econ. Develop.; Improving Transport. Safety; Providing a Choice of Modes; Making the Transport. System More Reliable; (10) Infrastructure and Operating Costs; (11) Ridership Potential; (12) Funding Consider.
The Solutionary Rail vision draws unlikely allies together. It provides common cause to workers, farmers, tribes, urban and rural communities via the tracks and corridors that connect them. Part action plan and part manifesto, this book launches a new people-powered campaign to transform the way we use trains and the corridors they travel through.
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Art Peterson is back with more color images from his Krambles-Peterson Archive. This book focuses on freight railroading and features scenes of switching and trains in industrial areas in the Transition and Classic eras. Large photos and in depth captions go beyond just telling what's in the photo - they put the images in context with the greater railroad scene as well as what was going on in the larger society.
Positive Train Control (PTC) is a communications and signaling system that has been identified by the National Transportation Safety Board (NTSB) as a technology capable of preventing accidents caused by train operator or dispatcher error. PTC is expected to reduce the number of accidents due to excessive speed, conflicting train movements, and engineer failure to obey wayside signals. The Rail Safety Improvement Act of 2008 (RSIA08) requires implementation of positive train control on railroads which carry passengers or have high-volume freight traffic with toxic or poisonous-by-inhalation hazardous materials. This book provides an overview of the issues and economics for improved rail safety. While PTC promises benefits in terms of safety, its implementation entails substantial costs and presents a variety of other policy-related issues. These include the interoperability of individual railroads' systems, sufficient radio spectrum to support PTC, and the possibility that PTC could be a barrier to market entry.