下列那些业务系统属于控制区()。 A: DMS B: DTS C: WAMS D: TMR
下列那些业务系统属于控制区()。 A: DMS B: DTS C: WAMS D: TMR
下列那些业务系统属于电力二次系统控制区?() A: EMS B: WAMS C: DTS D: TMR
下列那些业务系统属于电力二次系统控制区?() A: EMS B: WAMS C: DTS D: TMR
The story you have just told us________ me of an experience I once had. A: reminds B: wams C: recalls D: shows
The story you have just told us________ me of an experience I once had. A: reminds B: wams C: recalls D: shows
安全区I的典型系统包括:() A: 调度自动化系统(SCADA/EMS) B: 广域相量测量系统(WAMS) C: DTS系统、电力市场运营系统 D: 雷电监测系统
安全区I的典型系统包括:() A: 调度自动化系统(SCADA/EMS) B: 广域相量测量系统(WAMS) C: DTS系统、电力市场运营系统 D: 雷电监测系统
安全区I的典型系统包括:() A: A调度自动化系统(SCADA/EMS) B: B广域相量测量系统(WAMS) C: CDTS系统、电力市场运营系统 D: D雷电监测系统
安全区I的典型系统包括:() A: A调度自动化系统(SCADA/EMS) B: B广域相量测量系统(WAMS) C: CDTS系统、电力市场运营系统 D: D雷电监测系统
安全区I的典型系统包括:() A: 调度自动化系统(SCADA/EMS) \n B: 广域相量测量系统(WAMS) \n C: DTS系统、电力市场运营系统 \n D: 雷电监测系统
安全区I的典型系统包括:() A: 调度自动化系统(SCADA/EMS) \n B: 广域相量测量系统(WAMS) \n C: DTS系统、电力市场运营系统 \n D: 雷电监测系统
安全区Ⅱ目前包括的系统有()。 A: 水调自动化系统、DTS(将来需要进行联合事故演习); B: 电力交易系统; C: 广域相量测量系统(WAMS)和安全自动控制系统; D: 电能量计量系统。
安全区Ⅱ目前包括的系统有()。 A: 水调自动化系统、DTS(将来需要进行联合事故演习); B: 电力交易系统; C: 广域相量测量系统(WAMS)和安全自动控制系统; D: 电能量计量系统。
安全区Ⅱ目前包括的系统有()。 A: A水调自动化系统、DTS(将来需要进行联合事故演习); B: B电力交易系统; C: C广域相量测量系统(WAMS)和安全自动控制系统; D: D电能量计量系统。
安全区Ⅱ目前包括的系统有()。 A: A水调自动化系统、DTS(将来需要进行联合事故演习); B: B电力交易系统; C: C广域相量测量系统(WAMS)和安全自动控制系统; D: D电能量计量系统。
Big Data Technology can be applied to optimize the operation of power grid, analysis of operational risks and abnormal power consumption, including ( ) 。 A: Refined management of technical line loss B: Intelligent alarm for electric power dispatching control C: Distribution Network Risk Assessment D: Detection of non-technical line losses E: Assessment of grid operation time for WAMS
Big Data Technology can be applied to optimize the operation of power grid, analysis of operational risks and abnormal power consumption, including ( ) 。 A: Refined management of technical line loss B: Intelligent alarm for electric power dispatching control C: Distribution Network Risk Assessment D: Detection of non-technical line losses E: Assessment of grid operation time for WAMS
Big Data Technology can be applied to optimize the operation of power grid, analysis of operational risks and abnormal power consumption, including () . A: Evaluation of Power Grid Operation State based on WAMS B: Intelligent alarm for electric power dispatching control C: Risk Assessment of distribution network D: Non-technical line loss detection E: Fine Management of technical line loss
Big Data Technology can be applied to optimize the operation of power grid, analysis of operational risks and abnormal power consumption, including () . A: Evaluation of Power Grid Operation State based on WAMS B: Intelligent alarm for electric power dispatching control C: Risk Assessment of distribution network D: Non-technical line loss detection E: Fine Management of technical line loss