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Capacitor break-point partitioning of multi-machine systems for numerical integration by parallel processing

机译:多机系统的电容器断点分区,用于通过并行处理进行数值积分

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The ability to partition multimachine power system equations is very desirable because it enables the differential equations to be numerically integrated by many processors in parallel. This paper examines the reason for the present difficulty in achieving "partitioning". The finding is that the "natural laws" are favorable to "partitioning" and the difficulty has arisen from the man-made assumption of neglecting the "electrostatic voltages" which accompany the magnetic induction process. By taking advantage of the capacitors which are present naturally in the power system, one can, in principle, use them as break-points for partitioning. The feasibility of the method is demonstrated in real-time simulations of a two-turbogenerator system by parallel processors.
机译:划分多机动力系统方程的能力非常理想,因为它使微分方程能够被许多处理器并行进行数值积分。本文研究了目前难以实现“分区”的原因。发现是“自然定律”有利于“划分”,并且困难是由于人为假设而忽略了伴随磁感应过程的“静电电压”。通过利用电力系统中自然存在的电容器,原则上可以将它们用作分区的断点。通过并行处理器对两轮发电机系统进行实时仿真,证明了该方法的可行性。

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