A predictive control based operation control method for optical storage microgrid
An operation control and micro-grid technology, applied in the field of photovoltaic storage and micro-grid, can solve the problems of increased recovery cycle, poor investment income ratio, increased cost, etc., to achieve the effect of improving economic benefits and stabilizing photovoltaics
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Embodiment 1
[0027] An operation control method for photovoltaic storage microgrid based on predictive control. Based on photovoltaic and load prediction, the optimal operation control of photovoltaic storage microgrid is realized respectively under grid-connected and off-grid conditions. The specific steps are as follows:
[0028] In grid-connected mode:
[0029] (1) During the electricity price valley period (23:00 on the same day to 7:00 on the next day), the energy storage system is charged in constant voltage mode, and the power is charged to the set value (50% of the rated total power of the energy storage system);
[0030] (2) During the electricity price peak period (8:30 to 11:30 of the day, 16:00 to 21:00 of the day), when the photovoltaic power value is less than the load power value, the energy storage system discharges in constant power mode, and the discharge power value = Coefficient*(load power value-photovoltaic power value), the value range of the coefficient is 0~1, whic...
Embodiment 2
[0038] The steps of a predictive control-based optical storage microgrid operation control method described in this embodiment are the same as those in Embodiment 1, and the different technical parameters are:
[0039] 1) The charging setting value is 55% of the rated total power of the energy storage system;
[0040] 2) The minimum warning value is 32% of the total rated power of the energy storage system;
[0041] 3) The highest warning value is 87% of the total rated power of the energy storage system;
[0042] 4) The minimum power alarm value is 22% of the rated total power of the energy storage system;
[0043] 5) The maximum power alarm value is 96% of the rated total power of the energy storage system;
[0044] 6) The lower fixed value is 1.5% of the total rated power of the energy storage system.
Embodiment 3
[0046] The steps of a predictive control-based optical storage microgrid operation control method described in this embodiment are the same as those in Embodiment 1, and the different technical parameters are:
[0047] 1) The charging setting value is 60% of the rated total power of the energy storage system;
[0048] 2) The minimum warning value is 30% of the total rated power of the energy storage system;
[0049] 3) The highest warning value is 90% of the total rated power of the energy storage system;
[0050] 4) The minimum power alarm value is 20% of the rated total power of the energy storage system;
[0051] 5) The maximum power alarm value is 98% of the rated total power of the energy storage system;
[0052] 6) The lower fixed value is 2% of the total rated power of the energy storage system.
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