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Broadcast Communication by System Frequency Modulation

机译:系统调频的广播通信

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摘要

Load controllers available today can measure AC system frequency and react to frequency deviations. A system operator can communicate to frequency sensitive loads by changing the set-points of the system’s dispatchable frequency regulation resources. Explicitly signaling system state by generating off-nominal system frequency values is a novel narrowband broadcast communications channel between system operators and frequency sensitivedistributed energy resources (FS-DER). The feasibility of the proposed system is evaluated on an existing island power system in Denmark. This study shows that within standard frequency quality constraints, 4 distinct symbols are feasible on the island. However, the overarching imperative of system stability prevents the symbols from having arbitrary meanings. Higher frequency values must translate into greater consumption from loads, and vice versa. Withinthese constraints, the proposed system would allow operators to dispatch FS-DER in a robust manner, without using an external digital control channel. By dispatching FS-DER, their well known role as a power balancing resource can be expanded to include energy balancing services.
机译:今天可用的负载控制器可以测量交流系统的频率并对频率偏差做出反应。系统操作员可以通过更改系统的可调度频率调节资源的设定点来与频率敏感的负载进行通信。通过生成标称系统频率值来明确地发信号通知系统状态是系统运营商与频率敏感的分布式能源(FS-DER)之间的新型窄带广播通信信道。拟议系统的可行性在丹麦现有的岛屿电力系统上进行了评估。这项研究表明,在标准频率质量限制内,岛上可以使用4个不同的符号。但是,系统稳定性的最高要求阻止了符号具有任意含义。更高的频率值必须转化为更大的负载消耗,反之亦然。在这些约束条件下,提出的系统将允许运营商以健壮的方式调度FS-DER,而无需使用外部数字控制信道。通过调度FS-DER,它们作为电源平衡资源的众所周知的角色可以扩展为包括能量平衡服务。

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