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SBIR Phase I: An Improved Method for High-Speed Solution of Stiff Problems in Real Time

SBIR Phase I: An Improved Method for High-Speed Solution of Stiff Problems in Real Time
SBIR 第一阶段:一种实时高速求解刚性问题的改进方法
批准号:
9660755
负责人:
George Hannauer
金额:
$6.74万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
1997
资助国家:
美国
项目状态:
已结题
起止时间:
1997-01-01 至 1997-06-30

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*** 9660755 Hannauer This Small Business Innovation Research Phase I project is to develop and evaluate a promising new integration algorithm for solving stiff problems in real time. Such problems occur frequently in Aerospace, Chemical, Nuclear, Electric Power, and Automotive applications. In such applications, a common design technique is to combine a computer model of part of the system under evaluation (usually consisting of ordinary differential equations) with actual system hardware. Such "hardware in the loop" applications require real-time operation; the simulation of one second of system operation may take no more than one second of computer time. Some models contain very fast subsystems (e.g. a "tight" controller in a mechanical system or a small parasitic impedance in an electrical system). Such large eigenvalues (high frequencies, short time constants) require a very short computational step for stability. If the computer can't solve the entire set of system equations in this short time, real-time operation is impossible. The proposed integration algorithm, called the LIMP (Linearized IMPlicit) method, allows much larger steps to be taken for a given system, enabling real-time solution of many previously "intractable" problems. Potential commercial applications include the design of aircraft, missiles, chemical reactors, power generators, and automobiles. ***
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