PINE LIBRARY
Actualizado MLLib

Library "MLLib"
Machine Learning Library - Adaptive learning algorithms for parameter optimization
f_kirschenbaum_sgd(feature_z, baseline_ma, baseline_dev, pivot_high, pivot_low, sensitivity_current, learning_rate, sensitivity_min, sensitivity_max, coupling_strength, coupling_gate, pivot_lookback, proximity_pct, survival_prob)
Pivot-based SGD for adaptive sensitivity tuning (Kirschenbaum method)
Parameters:
feature_z (float): Z-score of the predictive feature (e.g., basket vector)
baseline_ma (float): Baseline moving average (center line)
baseline_dev (float): Standard deviation for band calculation
pivot_high (float): Recent pivot high price (na if none)
pivot_low (float): Recent pivot low price (na if none)
sensitivity_current (float): Current sensitivity parameter value
learning_rate (float): Learning rate for SGD updates
sensitivity_min (float): Minimum allowed sensitivity value
sensitivity_max (float): Maximum allowed sensitivity value
coupling_strength (float): Coupling strength for gating updates (0-1)
coupling_gate (float): Minimum coupling threshold for updates
pivot_lookback (int): Lookback period to historical feature/price at pivot
proximity_pct (float): Proximity threshold (0-1) for pivot to be "near band"
survival_prob (float): Survival probability for band calculation (e.g., 0.68 for 1-sigma)
Returns: [new_sensitivity, update_count] Updated sensitivity and number of updates performed
f_sgd_update(param_current, gradient, learning_rate, param_min, param_max, gate_strength, gate_threshold)
Generic SGD parameter update with optional gating
Parameters:
param_current (float): Current parameter value
gradient (float): Gradient (error * feature)
learning_rate (float): Learning rate
param_min (float): Minimum parameter value
param_max (float): Maximum parameter value
gate_strength (float): Gating strength (0-1, optional)
gate_threshold (float): Minimum gate strength to allow full update
Returns: float Updated parameter value
SGDState
SGD learning state for tracking parameter updates
Fields:
param (series float): Current parameter value
updates (series int): Number of updates performed
last_error (series float): Last prediction error
Machine Learning Library - Adaptive learning algorithms for parameter optimization
f_kirschenbaum_sgd(feature_z, baseline_ma, baseline_dev, pivot_high, pivot_low, sensitivity_current, learning_rate, sensitivity_min, sensitivity_max, coupling_strength, coupling_gate, pivot_lookback, proximity_pct, survival_prob)
Pivot-based SGD for adaptive sensitivity tuning (Kirschenbaum method)
Parameters:
feature_z (float): Z-score of the predictive feature (e.g., basket vector)
baseline_ma (float): Baseline moving average (center line)
baseline_dev (float): Standard deviation for band calculation
pivot_high (float): Recent pivot high price (na if none)
pivot_low (float): Recent pivot low price (na if none)
sensitivity_current (float): Current sensitivity parameter value
learning_rate (float): Learning rate for SGD updates
sensitivity_min (float): Minimum allowed sensitivity value
sensitivity_max (float): Maximum allowed sensitivity value
coupling_strength (float): Coupling strength for gating updates (0-1)
coupling_gate (float): Minimum coupling threshold for updates
pivot_lookback (int): Lookback period to historical feature/price at pivot
proximity_pct (float): Proximity threshold (0-1) for pivot to be "near band"
survival_prob (float): Survival probability for band calculation (e.g., 0.68 for 1-sigma)
Returns: [new_sensitivity, update_count] Updated sensitivity and number of updates performed
f_sgd_update(param_current, gradient, learning_rate, param_min, param_max, gate_strength, gate_threshold)
Generic SGD parameter update with optional gating
Parameters:
param_current (float): Current parameter value
gradient (float): Gradient (error * feature)
learning_rate (float): Learning rate
param_min (float): Minimum parameter value
param_max (float): Maximum parameter value
gate_strength (float): Gating strength (0-1, optional)
gate_threshold (float): Minimum gate strength to allow full update
Returns: float Updated parameter value
SGDState
SGD learning state for tracking parameter updates
Fields:
param (series float): Current parameter value
updates (series int): Number of updates performed
last_error (series float): Last prediction error
Notas de prensa
v2Added:
foutcomelabelstep(bars_elapsed, close_at_signal, atr_at_signal, amp_thresh, k_min, k_max, close_now)
Parameters:
bars_elapsed (int)
close_at_signal (float)
atr_at_signal (float)
amp_thresh (float)
k_min (int)
k_max (int)
close_now (float)
ftrainingbuffernew()
ftrainingbufferpush(tb, v1, v2, v3, v4, v5, v6, v7, pk, amp, hor, bar_i, dir)
Parameters:
tb (TrainingBuffer)
v1 (float)
v2 (float)
v3 (float)
v4 (float)
v5 (float)
v6 (float)
v7 (float)
pk (int)
amp (float)
hor (int)
bar_i (int)
dir (int)
ftrainingbuffercap(tb, max_size)
Parameters:
tb (TrainingBuffer)
max_size (int)
fpendingqueuenew()
fpendingqueuepush(pq, b, c, a, dir, f1, f2, f3, f4, f5, f6, f7, pk)
Parameters:
pq (PendingQueue)
b (int)
c (float)
a (float)
dir (int)
f1 (float)
f2 (float)
f3 (float)
f4 (float)
f5 (float)
f6 (float)
f7 (float)
pk (int)
fpendingqueuepopfront(pq)
Parameters:
pq (PendingQueue)
OutcomeLabel
Fields:
amplitude (series float)
horizon (series int)
ready (series bool)
TrainingBuffer
Fields:
f1 (array<float>)
f2 (array<float>)
f3 (array<float>)
f4 (array<float>)
f5 (array<float>)
f6 (array<float>)
f7 (array<float>)
packed (array<int>)
amplitude (array<float>)
horizon (array<int>)
bar_idx (array<int>)
direction (array<int>)
PendingQueue
Fields:
bar_idx (array<int>)
close_at (array<float>)
atr_at (array<float>)
direction (array<int>)
snap_f1 (array<float>)
snap_f2 (array<float>)
snap_f3 (array<float>)
snap_f4 (array<float>)
snap_f5 (array<float>)
snap_f6 (array<float>)
snap_f7 (array<float>)
snap_packed (array<int>)
Notas de prensa
v3Added:
fpendingqueuepushtyped(pq, bar_idx, c0, atr0, dir_, f1, f2, f3, f4, f5, f6, f7, packed, stype)
Parameters:
pq (PendingQueue)
bar_idx (int)
c0 (float)
atr0 (float)
dir_ (int)
f1 (float)
f2 (float)
f3 (float)
f4 (float)
f5 (float)
f6 (float)
f7 (float)
packed (int)
stype (int)
ftrainingbufferpushtyped(tb, f1, f2, f3, f4, f5, f6, f7, packed, amp, hor, bar_idx, dir_, stype)
Parameters:
tb (TrainingBuffer)
f1 (float)
f2 (float)
f3 (float)
f4 (float)
f5 (float)
f6 (float)
f7 (float)
packed (int)
amp (float)
hor (int)
bar_idx (int)
dir_ (int)
stype (int)
Notas de prensa
v4Added:
ftrainingbuffernew_atomic()
ftrainingbufferpush_atomic(tb, v1, v2, v3, v4, v5, v6, v7, pk, amp, hor, bar_i, dir, stype, f8)
Parameters:
tb (array<TBSample>)
v1 (float)
v2 (float)
v3 (float)
v4 (float)
v5 (float)
v6 (float)
v7 (float)
pk (int)
amp (float)
hor (int)
bar_i (int)
dir (int)
stype (int)
f8 (float)
ftrainingbuffercap_atomic(tb, max_size)
Parameters:
tb (array<TBSample>)
max_size (int)
fpendingqueuenew_atomic()
fpendingqueuepush_atomic(pq, b, c, a, dir, f1, f2, f3, f4, f5, f6, f7, pk, stype, f8)
Parameters:
pq (array<PQSample>)
b (int)
c (float)
a (float)
dir (int)
f1 (float)
f2 (float)
f3 (float)
f4 (float)
f5 (float)
f6 (float)
f7 (float)
pk (int)
stype (int)
f8 (float)
fpendingqueuepopfront_atomic(pq)
Parameters:
pq (array<PQSample>)
TBSample
Fields:
f1 (series float)
f2 (series float)
f3 (series float)
f4 (series float)
f5 (series float)
f6 (series float)
f7 (series float)
packed (series int)
amplitude (series float)
horizon (series int)
bar_idx (series int)
direction (series int)
sample_type (series int)
f8_val (series float)
PQSample
Fields:
bar_idx (series int)
close_at (series float)
atr_at (series float)
direction (series int)
snap_f1 (series float)
snap_f2 (series float)
snap_f3 (series float)
snap_f4 (series float)
snap_f5 (series float)
snap_f6 (series float)
snap_f7 (series float)
snap_packed (series int)
sample_type (series int)
f8_val (series float)
Notas de prensa
v5Notas de prensa
v6Updated:
ftrainingbuffercap_atomic(tb)
Parameters:
tb (array<TBSample>)
Biblioteca Pine
Fiel al espíritu de TradingView, el autor ha publicado este código de Pine como biblioteca de código abierto, para que otros programadores de nuestra comunidad puedan reutilizarlo. ¡Enhorabuena al autor! Puede usar esta biblioteca de forma privada o en otras publicaciones de código abierto, pero su reutilización en publicaciones está sujeta a nuestras Normas internas.
Exención de responsabilidad
La información y las publicaciones no constituyen, ni deben considerarse como, asesoramiento o recomendaciones financieras, de inversión, de trading u otro tipo, proporcionadas o respaldadas por TradingView. Obtenga más información en Condiciones de uso.
Biblioteca Pine
Fiel al espíritu de TradingView, el autor ha publicado este código de Pine como biblioteca de código abierto, para que otros programadores de nuestra comunidad puedan reutilizarlo. ¡Enhorabuena al autor! Puede usar esta biblioteca de forma privada o en otras publicaciones de código abierto, pero su reutilización en publicaciones está sujeta a nuestras Normas internas.
Exención de responsabilidad
La información y las publicaciones no constituyen, ni deben considerarse como, asesoramiento o recomendaciones financieras, de inversión, de trading u otro tipo, proporcionadas o respaldadas por TradingView. Obtenga más información en Condiciones de uso.