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Distribution Feeder Design 2 Days, February 24 25, 2016 Charlotte, NC (Ft. Mill, SC) What is this course about? The objective for this course is to expose attendees to the process of designing and
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How to fill out a distribution feeder design?

01
Understand the requirements: Before filling out a distribution feeder design, it is important to understand the specific requirements of the project. This involves determining the load requirements, voltage levels, and any other specifications that need to be considered.
02
Gather necessary data: Collect all the relevant data required for designing the distribution feeder. This may include load demand data, system maps, fault tolerance requirements, and any other information needed to accurately design the feeder.
03
Determine the layout: Based on the gathered data, determine the layout of the distribution feeder system. Consider factors like the location of substations, transformers, and the routing of feeders to ensure efficient distribution of power.
04
Calculate conductor sizes and voltage drop: Perform calculations to determine the appropriate sizes of conductors to be used in the feeder design. Consider the load demand, maximum allowable voltage drop, and other technical factors to ensure safe and efficient distribution of power.
05
Select protective devices: Determine the required protective devices such as fuses, circuit breakers, or reclosers to be installed in the distribution feeder system. These devices are necessary to protect against overloads, short circuits, or other electrical faults.
06
Consider redundancy and reliability: If required, incorporate redundancy and reliability measures in the distribution feeder design. This may include adding backup feeders or alternate power sources to ensure uninterrupted power supply in case of equipment failures or emergencies.
07
Document the design: Once the distribution feeder design is finalized, it is important to document all the details. This documentation should include drawings, calculations, specifications, and any other information essential for construction, operation, and maintenance purposes.

Who needs distribution feeder design?

01
Energy distribution companies: Distribution feeder design is crucial for energy distribution companies as it helps them ensure the efficient and reliable supply of electricity to their customers. Designing an optimized distribution feeder system helps minimize power losses, maximize system reliability, and meet the demand requirements.
02
Electrical engineers and consultants: Electrical engineers and consultants are responsible for designing and optimizing distribution feeder systems. They consider various factors such as load requirements, voltage drop limitations, and system reliability to create an effective and efficient distribution feeder design.
03
Contractors and construction companies: Contractors and construction companies are involved in the physical implementation of the distribution feeder system. They rely on accurate and detailed distribution feeder designs to correctly install and commission the system.
04
Regulatory bodies and authorities: Regulatory bodies and authorities play a vital role in ensuring the safety and reliability of distribution feeder systems. They review and approve the designs to comply with local regulations and standards, ensuring the overall integrity of the distribution grid.
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Distribution feeder design is the process of planning and determining the layout of electrical distribution feeders to efficiently deliver electricity to customers.
Electric utility companies are required to file distribution feeder design with regulatory authorities.
Distribution feeder design can be filled out by including detailed information such as feeder layout, load calculations, protection methods, and equipment specifications.
The purpose of distribution feeder design is to ensure a reliable and efficient distribution of electricity to customers while maintaining safety standards.
Information such as feeder layout, conductor sizes, voltage levels, protection devices, and coordination studies must be reported on distribution feeder design.
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