Classical orbital elements Vectors

25 ビュー (過去 30 日間)
Oskar Kinat
Oskar Kinat 2021 年 3 月 3 日
コメント済み: James Tursa 2021 年 3 月 4 日
If I would be given a R and a V vector and I would have to find orbital elements like... (a=semi-major axis)(eccentricity)(inclination)(right ascension of the ascending node)(argument of perigee)(true anomaly). After I defined the vectors and found the magnitudes I was trying to write out my equations but I guess matlab didn't like it. If you could look at my code and point me in the right direction I would appreciate it. I had quite a few of errors just to keep ending my functions over and over again?
First, solve for the angular momentum: h⃗ =r⃗ ×v⃗ h
The eccentricity vector is then: e⃗ =(v2−μ/r)r⃗ −(r⃗ ⋅v⃗ )v⃗
a=−μ/2E
i=cos−1hKhi = cos−1⁡hKh
Ω=cos−1nInΩ = cos−1⁡nIn
ω=cos−1n⃗ ⋅e⃗ neω = cos−1⁡n→⋅e→ne
ν=cos−1e⃗ ⋅r⃗ er
R= [-7953.8073 - 4174.5370 - 1008.9496];
v= [3.6460035 - 4.9118820 - 4.9193608];
h=cross(R,v);
nhat=cross([0 0 1],h)
r=norm(R);
mu=3.986*10^5
energy = mag(v)^2/2-mu/mag(R)
e = mag(evec)
evec = ((mag(v)^2-mu/mag(R))*R-dot(R,v)*v)/mu
if abs(e-1.0)>eps
a = -mu/(2*energy)
p = a*(1-e^2)
else
p = mag(h)^2/mu
a = inf
end
i = acos(h(3)/mag(h))
Omega = acos(n(1)/mag(n))
if n(2)<0
Omega = 360-Omega
argp = acos(dot(n,evec)/(mag(n)*e))
end
if e(3)<0
argp = 360-argp
nu = acos(dot(evec,R)/(e*mag(R))
end
if dot(R,v)<0
nu = 360 - nu
end

採用された回答

James Tursa
James Tursa 2021 年 3 月 3 日
編集済み: James Tursa 2021 年 3 月 3 日
Use the norm( ) function instead of mag( ). E.g., norm(v) instead of mag(v).
Calculate evec before you calculate e.
Your evec code appears correct, but your description of this is missing the mu term in the denominator. E.g.,
e⃗ =((v2−μ/r)r⃗ −(r⃗ ⋅v⃗ )v⃗ )/μ
  2 件のコメント
Oskar Kinat
Oskar Kinat 2021 年 3 月 3 日
編集済み: Oskar Kinat 2021 年 3 月 3 日
keep getting this error.
MATLAB_code.m Line: 36 Column: 34
Invalid expression. When calling a function or indexing a variable, use
parentheses. Otherwise, check for mismatched delimiters. I don't understand.
R= [-7953.8073 -4174.5370 -1008.9496];
V= [3.6460035 -4.9118820 -4.9193608];
h=cross(R,V);
nhat=cross([0 0 1],h);
r=norm(R);
v=norm(V);
mu=3.986*10^5;
evec = ((norm(V)^2-mu/norm(R))*R-dot(R,V)*V)/mu;
e = mag(evec);
energy = mag(V)^2/2-mu/mag(R);
if abs(e-1.0)>eps
a = -mu/(2*energy);
p = a*(1-e^2);
else
p = norm(h)^2/mu;
a = inf;
end
i = acos(h(3)/mag(h));
Omega = acos(n(1)/norm(n));
if n(2)<0
Omega = 360-Omega;
argp = acos(dot(n,evec)/(norm(n)*e));
end
if e(3)<0
argp = 360-argp;
nu = acos(dot(evec,R)/(e*norm(R)); % line 36 error
end
if dot(R,V)<0
nu = 360 - nu;
end
James Tursa
James Tursa 2021 年 3 月 4 日
The error message is telling you the exact problem ... you have mismatched parentheses. So add a closing paren:
nu = acos(dot(evec,R)/(e*norm(R)));

サインインしてコメントする。

その他の回答 (0 件)

カテゴリ

Help Center および File ExchangeIntroduction to Installation and Licensing についてさらに検索

製品


リリース

R2020b

Community Treasure Hunt

Find the treasures in MATLAB Central and discover how the community can help you!

Start Hunting!

Translated by