1Chapter 1
47Electrical Distribution Systems
2Introduction to Ships’ Electric Energy Systems
484.1 AC Distribution Systems
31.1 Overview of Electric Energy Systems
494.1.1 Alternating Current Basics
41.2 Fundamentals of Ship Power Generation
504.1.2 Distribution Network Design
51.2.1 Types of Power Generation Methods
514.1.3 Voltage Regulation Techniques
61.2.2 Power Generation Components
524.2 DC Distribution Systems
71.2.3 Efficiency Considerations
534.2.1 Advantages of DC Distribution: 4.2.2 DC Grid Integration
81.3 Introduction to Ship Electrical Distribution
544.3 Power Management Systems
91.3.1 Distribution Networks and Topologies
554.3.1 Load Shedding and Priority Management: 4.3.2 Power Quality Monitoring
101.3.2 Voltage Regulation and Control
564.4 Fault Detection and Isolation
111.3.3 Safety Measures and Regulations
574.5 Energy Storage Integration
121.4 Environmental Impact and Sustainability
584.6 Summary
131.5 Summary
594.7 Exercise
141.6 Exercise
60Chapter 5
15Chapter 2
61Control and Automation Systems
16Design Principles and Considerations
625.1 Control System Basics
172.1 System Design Fundamentals
635.2 SCADA Systems
182.1.1 Load Analysis and Sizing
645.3 Integrated Automation Systems
192.1.2 Voltage Selection and Compatibility
655.4 Predictive Maintenance
202.1.3 Redundancy and Reliability
665.5 Autonomous Operation
212.2 Component Selection and Integration
675.6 Summary
222.2.1 Generators and Alternators
685.7 Exercise
232.2.2 Transformers and Switchgear
69Chapter 6
242.2.3 Batteries and Energy Storage Systems
70Energy Efficiency Optimization
252.3 Electrical System Layout and Architecture
716.1 Energy Management Strategies
262.3.1 Distribution Panel Design
726.3 Power Factor Correction
272.3.2 Cable Routing and Management
736.6 Summary
282.3.3 Integration with Ship Structures
746.7 Exercise
292.4 Safety and Compliance
75Chapter 7
302.5 Summary
76Safety and Risk Management
312.6 Exercise
777.1 Safety Regulations and Standards
32Chapter 3
787.2 Risk Assessment Methodologies
33Power Generation Systems
797.3 Emergency Response Planning
343.1 Diesel-Electric Systems
807.5 Summary
353.1.1 Diesel Engine Principles
817.6 Exercise
363.1.2 Generator Selection and Operation
82Chapter 8
373.1.3 Exhaust Gas Treatment
83Emerging Technologies
383.2 Gas Turbine Systems
848.1 Advanced Power Electronics
393.2.1 Combined Cycle Configurations: 3.2.2 Performance Considerations
858.2 Energy Harvesting Technologies
403.3 Nuclear Power Plants
868.3 Smart Grid Integration
413.3.1 Nuclear Reactor Basics: 3.3.2 Safety and Containment Systems
878.4 Summary
423.4 Renewable Energy Integration
888.5 Exercise
433.5 Fuel Cell Technology
89References
443.6 Summary
90Glossary
453.7 Exercise
91Index
46Chapter 4