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Power Network Modelling for Hardware in the Loop and Real Time Applications

机译:循环中硬件的电源网络建模和实时应用

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In the paper the approximate model of power system elements adjusted for reactive power flow and voltage simulations is presented and the use of these models is demonstrated. The developed approximate models of power system elements are simple but when used in circuit simulations the fast and accurate reactive power flow solution is obtained. The performed reactive power flow calculations take into account corrections due to predetermined active power flow through circuit branches. The so derived values are accurate enough (error less than 1%) in cases where voltage angle across inductance model is less than 15 deg. The main advantage of the proposed approach is that the solution is directly calculated in one step, rather than using iterations. Due to this the proposed approach is handy and numerically efficient for use in power network modelling for hardware in the loop and real time applications, implemented on industrial grade programmable logic controllers (PLCs). Also the proposed approach can be efficiently used in projective model control applications. To demonstrate the versatility of the proposed modelling approach, these models are used to build up the circuit used for the simulation of voltage area controller operation. The voltage area control is modelled by two voltage control modes. The first one is keeping the area total exchange of reactive power close to zero until pilot node (PN) voltage is within the certain voltage band and the second one is imposing the predetermined the PN voltage reactive droop. Simulation results of area voltage control operating under different external and internal transient reactive sinks are presented and thoroughly explained.
机译:在纸质中,给出了用于无功功率流量和电压模拟的电力系统元件的近似模型,并证明了这些模型的使用。发达的电力系统元件的近似模型很简单,但是当在电路模拟时,获得快速和精确的无功流量。由于预定的电力流过电路分支,所执行的无功功率流量计算考虑校正。在电感模型的电压角小于15°的情况下,所以衍生的值足够准确(误差小于1%)。所提出的方法的主要优点是解决方案在一步中直接计算,而不是使用迭代。由于此,在工业级可编程逻辑控制器(PLC)上实现的循环和实时应用中硬件的电源网络建模使用,所提出的方法是方便且数值有效的。此外,所提出的方法也可以有效地用于投影模型控制应用中。为了展示所提出的建模方法的多功能性,这些模型用于构建用于模拟电压区域控制器操作的电路。电压区域控制由两个电压控制模式建模。第一个是将面积的完全交换保持接近于零,直到导频节点(PN)电压在某个电压带内,第二个是施加预定的PN电压反应下垂。提出和彻底地解释了在不同外部和内部瞬态反应槽下操作的区域电压控制的仿真结果。

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