Fast Reliability Assessing Method for Distribution Network with Distributed Renewable Energy Generation
Creators
- 1. Anhui Electrical Power Research Institute of State Grid, Hefei (China)
- 2. Dispatching Control Center of Anhui Electric Power Company of State Grid, Hefei (China)
Description
This paper proposes a fast reliability assessing method for distribution grid with distributed renewable energy generation. First, the Weibull distribution and the Beta distribution are used to describe the probability distribution characteristics of wind speed and solar irradiance respectively, and the models of wind farm, solar park and local load are built for reliability assessment. Then based on power system production cost simulation probability discretization and linearization power flow, a optimal power flow objected with minimum cost of conventional power generation is to be resolved. Thus a reliability assessment for distribution grid is implemented fast and accurately. The Loss Of Load Probability (LOLP) and Expected Energy Not Supplied (EENS) are selected as the reliability index, a simulation for IEEE RBTS BUS6 system in MATLAB indicates that the fast reliability assessing method calculates the reliability index much faster with the accuracy ensured when compared with Monte Carlo method. (paper)
Availability note (English)
Available from http://dx.doi.org/10.1088/1755-1315/111/1/012036Additional details
Identifiers
Publishing Information
- Journal Title
- IOP Conference Series: Earth and Environmental Science (Online)
- Journal Volume
- 111
- Journal Issue
- 1
- Journal Page Range
- [9 p.]
- ISSN
- 1755-1315
Conference
- Title
- International Conference on Advanced Environmental Engineering
- Acronym
- ICAEE2017
- Dates
- 15-17 Dec 2017
- Place
- Shenzen (China)
INIS
- Country of Publication
- United Kingdom
- Country of Input or Organization
- International Atomic Energy Agency (IAEA)
- INIS RN
- 52118341
- Subject category
- S29: ENERGY PLANNING, POLICY AND ECONOMY;
- Resource subtype / Literary indicator
- Conference
- Descriptors DEI
- ACCURACY; MONTE CARLO METHOD; POWER GENERATION; POWER SYSTEMS; RADIANT FLUX DENSITY; RELIABILITY; RENEWABLE ENERGY SOURCES; WIND TURBINE ARRAYS
- Descriptors DEC
- CALCULATION METHODS; ENERGY SOURCES; ENERGY SYSTEMS; FLUX DENSITY