Class/Object

breeze.optimize.proximal

NonlinearMinimizer

Related Docs: object NonlinearMinimizer | package proximal

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class NonlinearMinimizer extends SerializableLogging

NonlinearMinimizer solves the problem that has the following structure minimize f(x) + g(x)

g(x) represents the following constraints

1. x >= 0 2. lb <= x <= ub 3. L1(x) 4. Aeq*x = beq 5. aeq'x = beq 6. 1'x = s, x >= 0 ProbabilitySimplex from the reference Proximal Algorithms by Boyd et al, Duchi et al

f(x) can be a smooth convex function defined by DiffFunction or a proximal operator. For now the exposed API takes DiffFunction

g(x) is defined by a proximal operator

For proximal algorithms like L1 through soft-thresholding and Huber Loss (look into library of proximal algorithms for further details) we provide ADMM based Proximal algorithm based on the following reference: https://web.stanford.edu/~boyd/papers/admm/logreg-l1/distr_l1_logreg.html

A subset of proximal operators are projection operators. For projection, NonlinearMinimizer companion object provides project API which generates a Spectral Projected Gradient (SPG) or Projected Quasi Newton (PQN) solver. For projection operators like positivity, bounds, probability simplex etc, these algorithms converges faster as compared to ADMM based proximal algorithm.

TO DO

1. Implement FISTA / Nesterov's accelerated method and compare with ADMM 2. For non-convex function experiment with TRON-like Primal solver

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Instance Constructors

  1. new NonlinearMinimizer(proximal: Proximal, maxIters: Int = 1, innerIters: Int = 3, bfgsMemory: Int = 7, rho: Double = 1.0, alpha: Double = 1.0, abstol: Double = 1e-6, reltol: Double = 1e-4)

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Type Members

  1. case class State extends Product with Serializable

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Value Members

  1. final def !=(arg0: Any): Boolean

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  2. final def ##(): Int

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  3. final def ==(arg0: Any): Boolean

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  4. final def asInstanceOf[T0]: T0

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  5. def clone(): AnyRef

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  6. final def eq(arg0: AnyRef): Boolean

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  8. def finalize(): Unit

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  9. final def getClass(): Class[_]

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  10. def hashCode(): Int

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  11. final def isInstanceOf[T0]: Boolean

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  12. def iterations(primal: DiffFunction[BDV], init: BDV): Iterator[State]

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  13. val lbfgs: LBFGS[BDV]

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  14. def logger: LazyLogger

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  15. def minimize(primal: DiffFunction[BDV], init: BDV): BDV

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  16. def minimizeAndReturnState(primal: DiffFunction[BDV], init: BDV): State

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  17. final def ne(arg0: AnyRef): Boolean

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  18. final def notify(): Unit

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  19. final def notifyAll(): Unit

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  20. final def synchronized[T0](arg0: ⇒ T0): T0

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  24. final def wait(arg0: Long): Unit

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