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Construction of Nonlinear Stabilizer for Trajectories of Economic Growth

机译:经济增长轨迹的非线性稳定器的构建

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A dynamic model of optimization of R&D intensity is studied for analyzing the effect of the spillover technology assimilation on techno-economic growth. The research focuses on the issue of a reasonable balance in the R&D investment policy between the indigenous technology stock and exogenous technology flow. On the basis of the concavity properties of the Hamiltonian, a nonlinear stabilizer sustaining proportional techno-economic growth is constructed. Trends of optimal R&D intensity are examined depending on the values of the model macroeconomic parameters and the feedback variables. Econometric analysis shows that additional investments and restructuring of these sources for knowledge absorption could have the effect of increasing returns and provide a strong leverage for reaching qualitatively higher levels of sales, technology development, and consumption index.
机译:研究了研发强度优化的动态模型,以分析溢出技术同化对技术经济增长的影响。该研究的重点是在研发投资政策中,本地技术储备与外源技术流之间的合理平衡问题。根据哈密顿量的凹度特性,构造了一种保持技术经济按比例增长的非线性稳定器。根据模型宏观经济参数和反馈变量的值,检查最佳研发强度的趋势。计量经济学分析表明,为吸收知识而进行的额外投资和这些资源的重组可能会产生增加回报的效果,并为达到定性更高的销售,技术开发和消费指数水平提供强大的杠杆作用。

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