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Pseudo-spectral method for controlling the drug dosage in cancer

机译:用于控制癌症药物剂量的假光谱法

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A mixed chemotherapy–immunotherapy treatment protocol is developed for cancer treatment. Chemotherapy pushes the trajectory of the system towards the desired equilibrium point, and then immunotherapy alters the dynamics of the system by affecting the parameters of the system. A co-existing cancerous equilibrium point is considered as the desired equilibrium point instead of the tumour-free equilibrium. Chemotherapy protocol is derived using the pseudo-spectral (PS) controller due to its high convergence rate and simple implementation structure. Thus, one of the contributions of this study is simplifying the design procedure and reducing the controller computational load in comparison with Lyapunov-based controllers. In this method, an infinite-horizon optimal control problem is proposed for a non-linear cancer model. Then, the infinite-horizon optimal control of cancer is transformed into a non-linear programming problem. The efficient Legendre PS scheme is suggested to solve the proposed problem. Then, the dynamics of the system is modified by immunotherapy is another contribution. To restrict the upper limit of the chemo-drug dose based on the age of the patients, a Mamdani fuzzy system is designed, which is not present yet. Simulation results on four different dynamics cases how the efficiency of the proposed treatment strategy.
机译:为癌症治疗开发了混合化疗 - 免疫疗法治疗方案。化疗将系统的轨迹推向所需的平衡点,然后通过影响系统的参数来改变系统的动态。共存癌均衡点被认为是所需的平衡点而不是无肿瘤平衡点。由于其高收敛速率和简单的实现结构,使用伪光谱(PS)控制器来源化疗方案。因此,该研究的贡献之一是简化设计过程并减少与基于Lyapunov的控制器相比的控制器计算负载。在该方法中,提出了一种非线性癌症模型的无限范围的最佳控制问题。然后,将癌症的无限视野最佳控制变为非线性规划问题。建议有效的Legendre PS计划解决了提出的问题。然后,通过免疫疗法改性系统的动态是另一种贡献。为了限制基于患者的年龄的化学药物剂量的上限,设计了Mamdani模糊系统,尚未存在。仿真结果四种不同动力学案例拟议治疗策略的效率如何。

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