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Power-to-load balancing for heaving asymmetric wave-energy converters with nonideal power take-off

机译:具有非理想取力器的不对称波浪能转换器的功率-负载平衡

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The aim of this paper is to maximize the power-to-load ratio for asymmetric wave energy converters undergoing heave motion. Linear hydrodynamic theory is used to calculate bounds of the expected time averaged power (TAP) and corresponding surge-restraining force, pitch-restraining torque, and power take-off (PTO) control force with the assumption of sinusoidal displacement. This paper formulates an optimal control problem to handle an objective function with competing terms in an attempt to maximize power capture while minimizing structural and actuator loads in regular and irregular waves. Penalty weights are placed on the surge-restraining force, pitch-restraining torque, and PTO actuation force, thereby allowing the control focus to concentrate on either power absorption or load mitigation. The penalty weights are used to control peak structural and actuator loads that were found to curb the additional losses in power absorption associated with a nonideal PTO. Thus, in achieving these goals, a per-unit gain in TAP would not lead to a greater per-unit demand in structural strength, hence yielding a favorable benefit-to-cost ratio. Demonstrative results for "The Berkeley Wedge" in the form of output TAP, reactive TAP needed to drive WEC motion, and the amplitudes of the surge-restraining force, pitch restraining torque, and PTO control force are shown. (C) 2017 Published by Elsevier Ltd.
机译:本文的目的是使经历升沉运动的非对称波能转换器的功率/负载比最大化。线性流体动力学理论用于计算预期时间平均功率(TAP)以及相应的电涌抑制力,俯仰抑制转矩和取力器(PTO)控制力的边界,假设正弦位移。本文提出了一个最优控制问题,以竞争性条件处理目标函数,以试图最大程度地捕获功率,同时最大程度地减少规则波和不规则波中的结构载荷和执行器载荷。惩罚权重放在浪涌抑制力,俯仰抑制转矩和PTO致动力上,从而使控制重点集中在功率吸收或负载减轻上。惩罚权重用于控制峰值结构负载和执行器负载,这些负载被发现可以抑制与非理想PTO相关的功率吸收的额外损失。因此,在实现这些目标时,TAP的每单位收益不会导致对结构强度的更大的单位需求,因此产生有利的成本效益比。以输出TAP形式,驱动WEC运动所需的无功TAP形式显示了“伯克利楔”的演示结果,以及电涌抑制力,节距抑制转矩和PTO控制力的幅度。 (C)2017由Elsevier Ltd.发布

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