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b.abductive.dl
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b.abductive.dl
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battery(b).
%The internal amount of the excess power, battery is full.
e(B, E) :- battery(B),
p(B, ip, P_sub),
c(B, is, full),
E=P_sub,
#int(E).
%The internal amount of the excess power, battery is half full.
e(B, 0) :- battery(B),
p(B, ip, P_sub),
c(B, is, half_full),
ok(B).
%The internal amount of the excess power, battery is empty.
e(B, 0) :- battery(B),
p(B, ip, P_sub),
c(B, is, empty).
%Remaining amount of the demanded power (R) is less than or equal to the capacity of the battery (V), and the battery is full, id>=excess.
p(B, op, P_toSub) :- battery(B),
c(B, is, full),
c(B, id, P_dem),
p(B, ip, P_sub),
P_sub<P_dem,
R=P_dem - P_sub,
const(cb, V),
R<=V,
e(B, E),
P_dem>=E,
P_toSub=P_dem,
#int(P_toSub).
%Remaining amount of the demanded power (R) is less than or equal to the capacity of the battery (V), and the battery is full, id<excess.
p(B, op, P_toSub) :- battery(B),
c(B, is, full),
c(B, id, P_dem),
p(B, ip, P_sub),
P_sub<P_dem,
R=P_dem - P_sub,
const(cb, V),
R<=V,
e(B, E),
P_dem<E,
P_toSub=E,
#int(P_toSub).
%Remaining amount of the demanded power (R) is greater than capacity of the battery (V), and the battery is full.
p(B, op, P_toSub) :- battery(B),
c(B, is, full),
c(B, id, P_dem),
p(B, ip, P_sub),
P_sub<P_dem,
R=P_dem - P_sub,
const(cb, V),
R>V,
P_toSub=P_sub+V,
#int(P_toSub).
%Remaining amount of the demanded power (R) is less than or equal to the capacity of the battery (V), and the battery is half full, id>=excess.
p(B, op, P_toSub) :- battery(B),
c(B, is, half_full),
c(B, id, P_dem),
p(B, ip, P_sub),
P_sub<P_dem,
R=P_dem - P_sub,
const(cb, V),
R<=V,
e(B, E),
P_dem>=E,
P_toSub=P_dem,
#int(P_toSub),
ok(B).
%Remaining amount of the demanded power (R) is less than or equal to the capacity of the battery (V), and the battery is half full, id<excess.
p(B, op, P_toSub) :- battery(B),
c(B, is, half_full),
c(B, id, P_dem),
p(B, ip, P_sub),
P_sub<P_dem,
R=P_dem - P_sub,
const(cb, V),
R<=V,
e(B, E),
P_dem<E,
P_toSub=E,
#int(P_toSub),
ok(B).
%Remaining amount of the demanded power (R) is greater than capacity of the battery (V), and the battery is half full.
p(B, op, P_toSub) :- battery(B),
c(B, is, half_full),
c(B, id, P_dem),
p(B, ip, P_sub),
P_sub<P_dem,
R=P_dem - P_sub,
const(cb, V),
R>V,
P_toSub=P_sub+V,
#int(P_toSub),
ok(B).
%The battery is empty.
p(B, op, P_dem) :- battery(B),
c(B, is, empty),
p(B, ip, P_sub),
c(B, id, P_dem),
P_sub>=P_dem.
p(B, op, P_dem) :- battery(B),
c(B, is, half_full),
p(B, ip, P_sub),
c(B, id, P_dem),
P_sub>=P_dem,
ok(B).
p(B, op, P_sub) :- battery(B),
c(B, is, full),
p(B, ip, P_sub),
c(B, id, P_dem),
P_sub>=P_dem.
p(B, op, P_sub) :- battery(B),
c(B, is, empty),
p(B, ip, P_sub),
c(B, id, P_dem),
P_sub<P_dem.
%----------------------------------------------------------------
%The cells of the battery have grown old
%----------------------------------------------------------------
e(B, 0) :- battery(B),
p(B, ip, P_sub),
c(B, is, half_full),
old_cells(B).
p(B, op, P_dem) :- battery(B),
c(B, is, half_full),
p(B, ip, P_sub),
c(B, id, P_dem),
P_sub>=P_dem,
old_cells(B).
p(B, op, P_sub) :- battery(B),
c(B, is, half_full),
p(B, ip, P_sub),
c(B, id, P_dem),
P_sub<P_dem,
old_cells(B).