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Advanced Automatic Generation Control with Automatic Compensation of Tie-Line Losses

机译:具有自动补偿联络线损耗的高级自动发电控制

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摘要

This article proposes the improvement of present-day common automatic generation control schemes by the simple addition of area tie-line loss compensation to the standard conventional control algorithm. Conventional automatic generation control regulators of interconnected power systems are developed, assuming the same tie-line power flows on both tie-line terminals. This assumption has the systematic (steady-state) output errors on controlled variables: the system frequency (and indirectly on the synchronous lime) and areas tie-line exchanges. To eliminate large deviations of these variables outside of prescribed limits, their periodical corrections are necessary. This is achieved by simple modification of classical automatic generation control regulators, with the addition of corresponding tie-line losses to the area control error signal on standard automatic generation control regulator inputs. With such a modification, area automatic generation control regulators would attain better control performance, with less frequent operation switching from normal to the corrective mode. In addition, they become able to share tie-line power losses to interested parties by a simple adjustment of agreed participation coefficients set on corresponding automatic generation control regulators. The benefits obtained by such modified automatic generation control are paid by one additionally needed remote measurement per tie-line from their terminals in neighboring areas, while all other elements of existing automatic generation control schemes remain unchanged.
机译:本文通过将区域联络线损耗补偿简单地添加到标准常规控制算法中,提出了对当今常见的自动发电控制方案的改进。假设在两个联络线终端上有相同的联络线功率流,则开发了互连电力系统的常规自动发电控制调节器。该假设在控制变量上具有系统(稳态)输出误差:系统频率(间接在同步石灰上)和区域联络线交换。为了消除这些变量超出规定限制的较大偏差,必须对其进行定期更正。这可以通过对经典的自动发电控制调节器进行简单修改,并在标准自动发电控制调节器输入上的区域控制误差信号中添加相应的联络线损耗来实现。通过这样的修改,区域自动发电控制调节器将获得更好的控制性能,并且从正常模式切换到校正模式的频率降低。此外,通过简单调整在相应的自动发电控制调节器上设定的同意参与系数,他们就可以向相关方分摊联络线功率损耗。通过这种改进的自动发电控制所获得的好处,是通过每条联络线从邻近区域的终端对每条联络线进行的一项额外的远程测量来支付的,而现有自动发电控制方案的所有其他要素均保持不变。

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