Nova Patents
EP3640756A1

High level central plant optimization

Abstract

An optimization system for a central plant (10) includes a processing circuit (106) configured to receive load prediction data indicating building energy loads and utility rate data indicating a price of one or more resources consumed by equipment (60) of the central plant (10) to serve the building energy loads. The optimization system includes a high level optimization module (130) configured to generate an objective function that expresses a total monetary cost of operating the central plant (10) over an optimization period as a function of the utility rate data and an amount of the one or more resources consumed by the central plant equipment (60). The high level optimization module (130) is configured to optimize the objective function over the optimization period subject to load equality constraints and capacity constraints on the central plant equipment (60) to determine an optimal distribution of the building energy loads over multiple groups of the central plant equipment (60).

EP3640756A1, drawing sheet 1
Sheet 1 of 90

Term

9.4 yearsto projected expiry

Projected expiry 9 February 2036, counted from filing; an application has no term until it is granted.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

15 claims: 4 independent, 11 dependent

  1. 1
    A method for controlling equipment to serve energy loads of a building or campus, the method comprising:- obtaining a function that accounts for an amount of resources consumed by the equipment over a time horizon to serve the energy loads of the building or campus and an additional cost or penalty separate from the amount of resources consumed by the equipment over the time horizon;- using the function to determine a distribution of the energy loads across the equipment over the time horizon;and - operating the equipment to achieve the distribution of the energy loads across the equipment over the time horizon.
  2. 2
    The method of Claim 1, wherein the additional cost or penalty comprises a load change penalty based on a change in an amount of the energy loads assigned to a group of the equipment between a first time within the time horizon and a second time within the time horizon.
  3. 3
    The method of Claim 2, wherein the function quantifies a first cost based on the amount of resources consumed by the equipment over the time horizon and a second cost based on the change in the amount of the energy loads assigned to the group of the equipment between the first time and the second time.
  4. 4
    The method of any of Claims 1-3, wherein the additional cost or penalty comprises a demand charge based on a maximum resource consumption of the equipment during a demand charge period that at least partially overlaps with the time horizon.
  5. 5
    The method of Claim 4, further comprising applying a weighting factor to at least one of a first portion of the function that accounts for the amount of resources consumed by the equipment over the time horizon or a second portion of the function that accounts for the demand charge, the weighting factor based on at least one of a duration of the demand charge period or a duration of the time horizon.
  6. 6
    The method of any of Claims 1-5, wherein using the function to determine the distribution of the energy loads across the equipment over the time horizon comprises performing an optimization of the function while satisfying one or more constraints.
  7. 7
    The method of Claim 6, wherein the additional cost or penalty comprises a nonlinear function and the one or more constraints linearize the additional cost or penalty to facilitate the optimization of the function.
  8. 8
    The method of Claim 6 or 7, further comprising predicting the energy loads of the building or campus over the time horizon, wherein the one or more constraints require the distribution of the energy loads across the equipment over the time horizon to satisfy the predicted energy loads of the building or campus over the time horizon.
  9. 9
    A control system for equipment that serve energy loads of a building or campus, the control system comprising one or more processing circuits configured to:- obtain a function that accounts for a total amount of energy resources consumed by the equipment over a time horizon to serve the energy loads of the building or campus and an additional cost or penalty separate from the total amount of energy resources consumed by the equipment over the time horizon;- determine a distribution of the energy loads across the equipment over the time horizon using the function;and - operate the equipment to achieve the distribution of the energy loads across the equipment over the time horizon.
  10. 10
    The control system of Claim 9, wherein the additional cost or penalty comprises a load change penalty based on a change in an amount of the energy loads assigned to a group of the equipment between a first time within the time horizon and a second time within the time horizon.
  11. 11
    The control system of Claim 10, wherein the function quantifies a first cost based on the total amount of energy resources consumed by the equipment over the time horizon and a second cost based on the change in the amount of the energy loads assigned to the group of the equipment between the first time and the second time.
  12. 12
    The control system of any of Claims 9-11, wherein the additional cost or penalty comprises a demand charge based on a maximum resource consumption of the equipment during a demand charge period that at least partially overlaps with the time horizon.
  13. 13
    The control system of Claim 12, wherein the processing circuit is configured to apply a weighting factor to at least one of a first portion of the function that accounts for the total amount of energy resources consumed by the equipment over the time horizon or a second portion of the function that accounts for the demand charge, the weighting factor based on at least one of a duration of the demand charge period or a duration of the time horizon.
  14. 14
    The control system of any of Claims 9-13, wherein the processing circuit is configured to determine the distribution of the energy loads across the equipment over the time horizon by performing an optimization of the function while satisfying one or more constraints.
  15. 15
    The control system of Claim 14, wherein the processing circuit is configured to predict the energy loads of the building or campus over the time horizon, wherein the one or more constraints require the distribution of the energy loads across the equipment over the time horizon to satisfy the predicted energy loads of the building or campus over the time horizon.