发明名称 |
SYSTEMS, METHODS AND APPARATUS FOR IMPROVED ENERGY MANAGEMENT SYSTEMS WITH SECURITY CONSTRAINED DYNAMIC DISPATCH FOR WIND POWER MANAGEMENT |
摘要 |
Embodiments provide systems, methods and apparatus for controlling an energy delivery system including providing an energy management system (EMS) including a wind power management (WPM) system, the WPM system including a WPM application that includes a security constrained dynamic dispatch (SCDD) application; receiving input data within the SCCD application, the data including real time telemetry and dynamic unit parameters, schedule input data, and critical constraint data; validating the input data for consistency to avoid infeasibilities; pre-processing the validated input data to determine parameters including a total generation amount to be dispatched; formulating an optimization model based on the parameters and data structures storing the validated input data; executing an optimization process on the optimization model to compute a solution; post-processing the solution to determine economic basepoints; and using the determined economic basepoints in controlling operation of the energy delivery system. Numerous other aspects are provided. |
申请公布号 |
US2016273518(A1) |
申请公布日期 |
2016.09.22 |
申请号 |
US201514853082 |
申请日期 |
2015.09.14 |
申请人 |
Siemens Industry, Inc. |
发明人 |
Chen Dingguo;Mathine Matthew Jay |
分类号 |
F03D7/04;H02J3/00;G05B13/04 |
主分类号 |
F03D7/04 |
代理机构 |
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代理人 |
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主权项 |
1. A method of controlling an energy delivery system, the method comprising:
providing an energy management system (EMS) communicatively coupled to a plurality of generating units including wind power generating units, the EMS including a wind power management (WPM) system, the WPM system including a WPM application that includes a security constrained dynamic dispatch (SCDD) application; receiving input data within the SCCD application, the data including real time telemetry and dynamic unit parameters, schedule input data, and critical constraint data; validating the input data for consistency to avoid infeasibilities; pre-processing the validated input data to determine a first set of parameters including a total generation amount to be dispatched and additional parameters; formulating an optimization model based on the first set of parameters and one or more data structures storing the validated input data; executing an optimization process on the optimization model to compute a solution; post-processing the solution to determine each unit's economic basepoints; and using the determined economic basepoints in controlling operation of the energy delivery system. |
地址 |
Alpharetta GA US |