电气专业毕业设计外文翻译---电力系统自动化
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1、 外文资料翻译 Power System Automation Power system integration is the act of communication data to, or among IED s in the I&C system and remote users. Substation integration refers to combining data from the IEDs local to a substation so that there is a single point of contact in the substation for all of
2、 the I&C data. Poletop devices often communicate to the substation via wireless or fiber connections. Remote and local substation and feeder control is passed through the substation controller acting as a single point of contact. Some systems bypass the substation controller by using direct connecti
3、ons to the poletop devices, such as RTU s, protective relays, and controllers. Power system automation is the act of automatically controlling the power system via I&C devices. Substation automation refers to using IED data, control and automation capabilities within the substation, and control comm
4、ands from remote users to control power system devices. Since true substation automation relies on substation integration, the terms are often used interchangeably. Power system automation includes processes associated with generation and delivery of power. A subset of the process deal with delivery
5、 of power at transmission and distribution levels, which is power delivery automation. Together, monitoring and control of power delivery system in the substation and on the poletop reduce the occurrence of outages and shorten the duration of outages that do occur. The IEDs, communications protocols
6、, and communications methods described in previous sections, work together as a system to perform power system automation. Though each utility is unique, most consider power delivery automation of transmission and distribution substation and feeders to include : Supervisory Control and Data Acquisit
7、ion(SCADA)-operator supervision and control; Distribution Automation-fault location, auto-isolation, auto-sectionalizing, and auto-restoration; Substation Automation-breaker failure, reclosing, battery monitoring, dead substation transfer, and substation load transfer; Energy Management System (EMS)
8、-load flow, VAR and voltage monitoring and control, generation control, transformer and feeder load balancing; Fault analysis and device maintenance. System without automated control still have the advantages of remote monitoring and operator control of power system devices, which includes: Remote m
9、onitoring and control of circuit breakers and automated switches; Remote monitoring of non-automated switches and fuses; Remote monitoring and control of capacitor banks; Remote monitoring and voltage control; Remote power quality monitoring and control. IED s described in the overview are used to p
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- 电气专业 毕业设计 外文 翻译 电力系统 自动化
