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Maxwell on Governors
Mark

작성자

Mark

31. 8월 2026FI
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Maxwell on Governors

Watt's governor had been spinning on engines for eighty years and nobody could say why some of them held a steady speed while others swung back and forth for ever. Engineers knew the cures by feel - add friction, lighten the balls, shorten the linkage - and had no way to tell which cure a given engine needed, or whether a new design would hunt before it was built. James Clerk Maxwell's paper of 1868 stopped describing the mechanism and wrote down its equation. The governor is a mass on a spring with damping, pushed outwards by speed; the engine is an inertia whose acceleration depends on where the governor has moved the throttle. Put the two together and the loop is THIRD order - which is the lowest order that can oscillate while every individual part of it looks perfectly stable on its own. The answer is then a sign. Solve for the roots of the characteristic equation and the machine settles if every root has a negative real part, and swings for ever if any of them does not. For the cubic that condition reduces to something you can read out loud: damping times stiffness times engine inertia must beat gain times governor mass. Maxwell solved the third and fourth order cases and left the general one open; Routh took it in 1876 and Hurwitz in 1895, and the whole of stability theory is downstream. The paper also draws a distinction that is still the first thing anyone learns about controllers. A flyball device only MODERATES - after a load change it settles to a new speed that is permanently a few per cent wrong. Maxwell refused to call that a governor. A real governor keeps moving the throttle while any error remains, which means it acts on the accumulated error: integral action, ninety years before anybody painted PID on a panel.
중급
3 hours

안내

1

Build a governor you can destabilise

Hang two masses on hinged arms from a vertical shaft in the drill chuck, linked to a sliding collar. Spin it up and mark the collar height against speed on the tachometer - that is your sensor calibration. Now let the collar drive a light card flap into the airstream, and let the flap's position feed back to the drill trigger through a rubber band. You have closed a loop.

이 단계의 재료:

연강 환봉연강 환봉300 mm
육각 너트육각 너트6
고무줄고무줄1 bag
골판지 시트골판지 시트1

필요한 도구:

무선 드릴무선 드릴
디지털 회전 속도계디지털 회전 속도계
강철 자강철 자
각도기각도기
2

Find the hunting threshold with a paddle

Hang a small card paddle from the collar into a jar of water. That is your damping, and you can vary it by how deep the paddle sits. Start deep and lift the paddle a few millimetres at a time. There is a depth at which the swing stops dying away and holds a steady amplitude. Time ten swings there: the period is the one the notebook predicts from the spring and the mass alone.

이 단계의 재료:

골판지 시트골판지 시트1
물500 ml

필요한 도구:

스톱워치스톱워치
내열 유리 비커내열 유리 비커
강철 자강철 자
디지털 회전 속도계디지털 회전 속도계
3

The cubic, the sign of its roots, and four ways to hold a speed

Jupyter 노트북 불러오는 중…

필요한 도구:

데스크톱 컴퓨터데스크톱 컴퓨터
4

Compendium: what Maxwell could not finish, and who did

Maxwell solved the cubic and the quartic by hand and then stopped, writing that he had not found the general condition for an equation of any degree. He put the problem to the mathematicians, and Edward Routh took the 1877 Adams Prize with a recursive table that answers it for any order without ever computing a root - you build a triangular array from the coefficients and count sign changes in the first column. Adolf Hurwitz reached the same result independently in 1895 from a set of determinants, which is why the criterion carries both names. Routh's table is still the cheapest stability test there is, and it is the only one in this batch that needs no plot, no measurement and no computer. The reason the question was urgent in 1868 is not steam engines. Maxwell had been asked about the governor on the British Association's apparatus for measuring electrical resistance in absolute units, where a coil had to be spun at an exactly constant rate and the existing regulator would not stop hunting. The whole of stability theory begins with a metrology problem - somebody needing a machine to hold a number steady enough to define an ohm - and only afterwards became the thing that flies aircraft.

재료

5
  • 플레이스홀더
  • 플레이스홀더
  • 플레이스홀더
  • 플레이스홀더
  • 500 ml
    플레이스홀더

필요 도구

7

CC0 퍼블릭 도메인

이 블루프린트는 CC0로 공개되었습니다. 어떤 목적으로든 자유롭게 복사, 수정, 배포 및 사용할 수 있습니다.

제품 구매를 통해 메이커를 지원하세요. 판매자가 설정한 메이커 커미션 을 받거나, 이 블루프린트의 새로운 반복을 만들어 연결로 포함시킬 수 있습니다.

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